Wednesday, October 19, 2016

Olanzapine Sandoz 5 mg Orodispersible Tablets





1. Name Of The Medicinal Product



Olanzapine Sandoz 5 mg Orodispersible Tablets


2. Qualitative And Quantitative Composition



Each orodispersible tablet contains 5 mg olanzapine.



Excipients:



60.60 mg lactose monohydrate as 57.57 lactose as anhydrate.



For a full list of excipients, see section 6.1.



3. Pharmaceutical Form



Yellow, round, biconvex, tablet with diameter 6.0mm±0.1mm and thickness 2.6mm±0.2mm.



4. Clinical Particulars



4.1 Therapeutic Indications



Adults



Olanzapine is indicated for the treatment of schizophrenia.



Olanzapine is effective in maintaining the clinical improvement during continuation therapy in patients who have shown an initial treatment response.



Olanzapine is indicated for the treatment of moderate to severe manic episode.



In patients whose manic episode has responded to olanzapine treatment, olanzapine is indicated for the prevention of recurrence in patients with bipolar disorder (see section 5.1).



4.2 Posology And Method Of Administration



Adults



Schizophrenia: The recommended starting dose for olanzapine is 10 mg/day.



Manic episode: The starting dose is 15 mg as a single daily dose in monotherapy or 10 mg daily in combination therapy (See section 5.1).



Preventing recurrence in bipolar disorder: The recommended starting dose is 10 mg/day. For patients who have been receiving olanzapine for treatment of manic episode, continue therapy for preventing recurrence at the same dose. If a new manic, mixed, or depressive episode occurs, olanzapine treatment should be continued (with dose optimisation as needed), with supplementary therapy to treat mood symptoms, as clinically indicated.



During treatment for schizophrenia, manic episode and recurrence prevention in bipolar disorder, daily dosage may subsequently be adjusted on the basis of individual clinical status within the range 5-20 mg/day. An increase to a dose greater than the recommended starting dose is advised only after appropriate clinical reassessment and should generally occur at intervals of not less than 24 hours. Olanzapine can be given without regards for meals as absorption is not affected by food. Gradual tapering of the dose should be considered when discontinuing olanzapine.



Olanzapine Orodispersible Tablet should be placed in the mouth, where it will rapidly disperse in saliva, so it can be easily swallowed. Removal of the intact orodispersible tablet from the mouth is difficult. Since the orodispersible tablet is fragile, it should be taken immediately on opening the blister. Alternatively, it may be dispersed in a full glass of water or other suitable beverage (orange juice, apple juice, milk or coffee) immediately before administration.



Olanzapine Orodispersible Tablet is bioequivalent to olanzapine coated tablets, with a similar rate and extent of absorption. It has the same dosage and frequency of administration as olanzapine coated tablets. Olanzapine orodispersible tablets may be used as an alternative to olanzapine coated tablets.



Paediatric population



Olanzapine is not recommended for use in children and adolescents below 18 years of age due to a lack of data on safety and efficacy. A greater magnitude of weight gain, lipid and prolactin alterations has been reported in short term studies of adolescent patients than in studies of adult patients (see sections 4.4, 4.8, 5.1 and 5.2).



Elderly



A lower starting dose (5 mg/day) is not routinely indicated but should be considered for those 65 and over when clinical factors warrant (see also section 4.4).



Renal and/or hepatic impairment



A lower starting dose (5 mg) should be considered for such patients. In cases of moderate hepatic insufficiency (cirrhosis, Child-Pugh Class A or B), the starting dose should be 5 mg and only increased with caution.



Gender



The starting dose and dose range need not be routinely altered for female patients relative to male patients.



Smokers



The starting dose and dose range need not be routinely altered for non-smokers relative to smokers.



When more than one factor is present which might result in slower metabolism (female gender, geriatric age, non-smoking status), consideration should be given to decreasing the starting dose. Dose escalation, when indicated, should be conservative in such patients.



In cases where dose increments of 2.5 mg are considered necessary, Olanzapine coated tablets should be used.



(See sections 4.5 and 5.2.)



4.3 Contraindications



Hypersensitivity to the active substance or to any of the excipients. Patients with known risk of narrow-angle glaucoma.



4.4 Special Warnings And Precautions For Use



During antipsychotic treatment, improvement in the patient's clinical condition may take several days to some weeks. Patients should be closely monitored during this period.



Dementia-related psychosis and/or behavioural disturbances



Olanzapine is not approved for the treatment of dementia-related psychosis and/or behavioural disturbances and is not recommended for use in this particular group of patients because of an increase in mortality and the risk of cerebrovascular accident. In placebo-controlled clinical trials (6-12 weeks duration) of elderly patients (mean age 78 years) with dementia-related psychosis and/or disturbed behaviours, there was a 2-fold increase in the incidence of death in olanzapine-treated patients compared to patients treated with placebo (3.5% vs. 1.5%, respectively). The higher incidence of death was not associated with olanzapine dose (mean daily dose 4.4 mg) or duration of treatment. Risk factors that may predispose this patient population to increased mortality include age >65 years, dysphagia, sedation, malnutrition and dehydration, pulmonary conditions (e.g., pneumonia, with or without aspiration), or concomitant use of benzodiazepines. However, the incidence of death was higher in olanzapine-treated than in placebo-treated patients independent of these risk factors.



In the same clinical trials, cerebrovascular adverse events (CVAE e.g., stroke, transient ischemic attack), including fatalities, were reported. There was a 3-fold increase in CVAE in patients treated with olanzapine compared to patients treated with placebo (1.3% vs. 0.4%, respectively). All olanzapine- and placebo-treated patients who experienced a cerebrovascular event had pre-existing risk factors. Age >75 years and vascular/mixed type dementia were identified as risk factors for CVAE in association with olanzapine treatment. The efficacy of olanzapine was not established in these trials.



Parkinson's disease



The use of olanzapine in the treatment of dopamine agonist associated psychosis in patients with Parkinson's disease is not recommended. In clinical trials, worsening of Parkinsonian symptomatology and hallucinations were reported very commonly and more frequently than with placebo (see section 4.8), and olanzapine was not more effective than placebo in the treatment of psychotic symptoms. In these trials, patients were initially required to be stable on the lowest effective dose of anti-Parkinsonian medicinal products (dopamine agonist) and to remain on the same anti-Parkinsonian medicinal products and dosages throughout the study. Olanzapine was started at 2.5 mg/day and titrated to a maximum of 15 mg/day based on investigator judgement.



Neuroleptic Malignant Syndrome (NMS)



NMS is a potentially life-threatening condition associated with antipsychotic medicinal products. Rare cases reported as NMS have also been received in association with olanzapine. Clinical manifestations of NMS are hyperpyrexia, muscle rigidity, altered mental status, and evidence of autonomic instability (irregular pulse or blood pressure, tachycardia, diaphoresis, and cardiac dysrythmia). Additional signs may include elevated creatinine phosphokinase, myoglobinuria (rhabdomyolysis), and acute renal failure. If a patient develops signs and symptoms indicative of NMS, or presents with unexplained high fever without additional clinical manifestations of NMS, all antipsychotic medicines, including olanzapine must be discontinued.



Hyperglycaemia and diabetes



Hyperglycaemia and/or development or exacerbation of diabetes occasionally associated with ketoacidosis or coma has been reported rarely, including some fatal cases (see section 4.8). In some cases, a prior increase in body weight has been reported which may be a predisposing factor. Appropriate clinical monitoring is advisable in accordance with utilised antipsychotic guidelines. Patients treated with any antipsychotic agents, including olanzapine, should be observed for signs and symptoms of hyperglycaemia (such as polydipsia, polyuria, polyphagia and weakness) and patients with diabetes mellitus or with risk factors for diabetes mellitus should be monitored regularly for worsening of glucose control. Weight should be monitored regulary.



Lipid alterations



Undesirable alterations in lipids have been observed in olanzapine-treated patients in placebo-controlled clinical trials (see section 4.8). Lipid alterations should be managed as clinically appropriate, particularly in dyslipidemic patients and in patients with risk factors for the development of lipids disorders.



Patients treated with any antipsychotic agents, including olanzapine, should be monitored regularly for lipids in accordance with utilised antipsychotic guidelines.



Anticholinergic activity



While olanzapine demonstrated anticholinergic activity in vitro, experience during the clinical trials revealed a low incidence of related events. However, as clinical experience with olanzapine in patients with concomitant illness is limited, caution is advised when prescribing for patients with prostatic hypertrophy, or paralytic ileus and related conditions.



Hepatic function



Transient, asymptomatic elevations of hepatic aminotransferases, alanine transferase (ALT), aspartate transferase (AST) have been seen commonly, especially in early treatment. Caution should be exercised and follow-up organized in patients with elevated ALT and/or AST, in patients with signs and symptoms of hepatic impairment, in patients with pre-existing conditions associated with limited hepatic functional reserve, and in patients who are being treated with potentially hepatotoxic medicines. In cases where hepatitis (including hepatocellular, cholestatic or mixed liver injury) has been diagnosed, olanzapine treatment should be discontinued.



Neutropenia



Caution should be exercised in patients with low leukocyte and/or neutrophil counts for any reason, in patients receiving medicines known to cause neutropenia, in patients with a history of drug-induced bone marrow depression/toxicity, in patients with bone marrow depression caused by concomitant illness, radiation therapy or chemotherapy and in patients with hypereosinophilic conditions or withmyeloproliferative disease. Neutropenia has been reported commonly when olanzapine and valproate are used concomitantly (see section 4.8).



Discontinuation of treatment



Acute symptoms such as sweating, insomnia, tremor, anxiety, nausea, or vomiting have been reported very rarely (<0.01%) when olanzapine is stopped abruptly.



QT interval



In clinical trials, clinically meaningful QTc prolongations (Fridericia QT correction [QTcF]



Thromboembolism



Temporal association of olanzapine treatment and venous thromboembolism has very rarely (<0.01%) been reported. A causal relationship between the occurrence of venous thromboembolism and treatment with olanzapine has not been established. However, since patients with schizophrenia often present with acquired risk factors for venous thromboembolism, all possible risk factors of VTE, e.g., immobilisation of patients, should be identified and preventive measures undertaken.



General CNS activity



Given the primary CNS effects of olanzapine, caution should be used when it is taken in combination with other centrally acting medicines and alcohol. As it exhibits in vitro dopamine antagonism, olanzapine may antagonize the effects of direct and indirect dopamine agonists.



Seizures



Olanzapine should be used cautiously in patients who have a history of seizures or are subject to factors which may lower the seizure threshold. Seizures have been reported to occur rarely in patients when treated with olanzapine. In most of these cases, a history of seizures or risk factors for seizures were reported.



Tardive Dyskinesia



In comparator studies of one year or less duration, olanzapine was associated with a statistically significant lower incidence of treatment emergent dyskinesia. However the risk of tardive dyskinesia increases with long term exposure, and therefore if signs or symptoms of tardive dyskinesia appear in a patient on olanzapine, a dose reduction or discontinuation should be considered. These symptoms can temporally deteriorate or even arise after discontinuation of treatment.



Postural hypotension



Postural hypotension was infrequently observed in the elderly in olanzapine clinical trials. As with other antipsychotics, it is recommended that blood pressure is measured periodically in patients over 65 years.



Sudden cardiac death



In postmarketing reports with olanzapine, the event of sudden cardiac death has been reported in patients with olanzapine. In a retrospective observational cohort study, the risk of presumed sudden cardiac death in patients treated with olanzapine was approximately twice the risk in patients not using antipsychotics. In the study, the risk of olanzapine was comparable to the risk of atypical antipsychotics included in a pooled analysis.



Paediatric population



Olanzapine is not indicated for use in the treatment of children and adolescents. Studies in patients aged 13-17 years showed various adverse reactions, including weight gain, changes in metabolic parameters and increases in prolactin levels. Long-term outcomes associated with these events have not been studied and remain unknown (see sections 4.8 and 5.1).



Lactose



This medicine contains lactose monohydrate. Patients with rare hereditary problems of galactose intolerance, the Lapp lactase deficiency or glucose-galactose malabsorption should not take this medicine.



4.5 Interaction With Other Medicinal Products And Other Forms Of Interaction



Paediatric population



Interaction studies have only been performed in adults.



Potential interactions affecting olanzapine



Since olanzapine is metabolised by CYP1A2, substances that can specifically induce or inhibit this isoenzyme may affect the pharmacokinetics of olanzapine.



Induction of CYP1A2



The metabolism of olanzapine may be induced by smoking and carbamazepine, which may lead to reduced olanzapine concentrations. Only slight to moderate increase in olanzapine clearance has been observed. The clinical consequences are likely to be limited, but clinical monitoring is recommended and an increase of olanzapine dose may be considered if necessary (see section 4.2).



Inhibition of CYP1A2



Fluvoxamine, a specific CYP1A2 inhibitor, has been shown to significantly inhibit the metabolism of olanzapine. The mean increase in olanzapine Cmax following fluvoxamine was 54 % in female nonsmokers and 77 % in male smokers. The mean increase in olanzapine AUC was 52 % and 108 % respectively. A lower starting dose of olanzapine should be considered in patients who are using fluvoxamine or any other CYP1A2 inhibitors, such as ciprofloxacin. A decrease in the dose of olanzapine should be considered if treatment with an inhibitor of CYP1A2 is initiated.



Decreased bioavailability



Activated charcoal reduces the bioavailability of oral olanzapine by 50 to 60% and should be taken at least 2 hours before or after olanzapine.



Fluoxetine (a CYP2D6 inhibitor), single doses of antacid (aluminium, magnesium) or cimetidine have not been found to significantly affect the pharmacokinetics of olanzapine.



Potential for olanzapine to affect other medicinal products



Olanzapine may antagonise the effects of direct and indirect dopamine agonists.



Olanzapine does not inhibit the main CYP450 isoenzymes in vitro (e.g. 1A2, 2D6, 2C9, 2C19, 3A4). Thus no particular interaction is expected as verified through in vivo studies where no inhibition of metabolism of the following active substances was found: tricyclic antidepressant (representing mostly CYP2D6 pathway), warfarin (CYP2C9), theophylline (CYP1A2) or diazepam (CYP3A4 and 2C19).



Olanzapine showed no interaction when co-administered with lithium or biperiden.



Therapeutic monitoring of valproate plasma levels did not indicate that valproate dosage adjustment is required after the introduction of concomitant olanzapine.



General CNS activity



Caution should be exercised in patients who consume alcohol or receive medicinal products that can cause central nervous system depression.



The concomitant use of olanzapine with anti-Parkinsonian medicinal products in patients with Parkinson's disease and dementia is not recommended (see section 4.4).



QTc interval



Caution should be used if olanzapine is being administered concomitantly with medicinal products known to increase QTc interval (see section 4.4).



4.6 Pregnancy And Lactation



Pregnancy



There are no adequate and well-controlled studies in pregnant women. Patients should be advised to notify their physician if they become pregnant or intend to become pregnant during treatment with olanzapine. Nevertheless, because human experience is limited, olanzapine should be used in pregnancy only if the potential benefit justifies the potential risk to the foetus.



Spontaneous reports have been very rarely received on tremor, hypertonia, lethargy and sleepiness, in infants born to mothers who had used olanzapine during the 3rd trimester.



Breast feeding



In a study in breast-feeding, healthy women, olanzapine was excreted in breast milk. Mean infant exposure (mg/kg) at steady state was estimated to be 1.8% of the maternal olanzapine dose (mg/kg). Patients should be advised not to breast feed an infant if they are taking olanzapine.



4.7 Effects On Ability To Drive And Use Machines



No studies on the effects on the ability to drive and use machines have been performed. Because olanzapine may cause somnolence and dizziness, patients should be cautioned about operating machinery, including motor vehicles.



4.8 Undesirable Effects



Adults



The most frequently (seen in



The following table lists the adverse reactions and laboratory investigations observed from spontaneous reporting and in clinical trials. Within each frequency grouping, adverse reactions are presented in order of decreasing seriousness. The frequency terms listed are defined as follows: Very common (















































































System Organ Class




Very common




Common




Uncommon




Not known




Blood and the lymphatic system disorders




 




Eosinophilia




Leukopenia



Neutropenia




Thrombocytopenia




Immune system disorders




 




 




 




Allergic reaction




Metabolism and nutrition disorders




Weight gain1




Elevated cholesterol levels2,3



Elevated glucose levels4



Elevated triglyceride levels2,5



Glucosuria



Increased appetite




 




Development or exacerbation of diabetes occasionally associated with ketoacidosis or coma, including some fatal cases (see section 4.4)



Hypothermia




Nervous system disorders




Somnolence




Dizziness



Akathisia6



Parkinsonism6



Dyskinesia6




 




Seizures where in most cases a history of seizures or risk factors for seizures were reported



Neuroleptic malignant syndrome (see section 4.4)



Dystonia (including oculogyration)



Tardive dyskinesia



Discontinuation symptoms7




Cardiac disorders




 




 




Bradycardia



QTc prolongation (see section 4.4)




Ventricular tachycardia/fibrillation, sudden death (see section 4.4)




Vascular disorders




 




Orthostatic hypotension




 




Thromboembolism (including pulmonary embolism and deep vein thrombosis)




Gastrointestinal disorders




 




Mild, transient anticholinergic effects including constipation and dry mouth




 




Pancreatitis




Hepato-biliary disorders




 




Transient, asymptomatic elevations of hepatic aminotransferases (ALT, AST), especially in early treatment (see section 4.4)




 




Hepatitis (including hepatocellular, cholestatic or mixed liver injury)




Skin and subcutaneous tissue disorders




 




Rash




Photosensitivity reaction



Alopecia




 




Musculoskeletal and connective tissue disorders




 




 




 




Rhabdomyolysis




Renal and urinary disorders




 




 




Urinary incontinence




Urinary hesitation




Reproductive system and breast disorders




 




 




 




Priapism




General disorders and administration site conditions




 




Asthenia



Fatigue



Oedema




 




 




Investigations




Elevated plasma prolactin levels8




 




High creatine phosphokinase



Increased total bilirubin




Increased alkaline phosphatase



1 Clinically significant weight gain was observed across all baseline Body Mass Index (BMI) categories.



Following short term treatment (median duration 47 days), weight gain



2 Mean increases in fasting lipid values (total cholesterol, LDL cholesterol, and triglycerides) were greater in patients without evidence of lipid dysregulation at baseline.



3 Observed for fasting normal levels at baseline (< 5.17 mmol/l) which increased to high (



4 Observed for fasting normal levels at baseline (< 5.56 mmol/l) which increased to high (



5 Observed for fasting normal levels at baseline (< 1.69 mmol/l) which increased to high (



6 In clinical trials, the incidence of parkinsonism and dystonia in olanzapine-treated patients was numerically higher, but not statistically significantly different from placebo. Olanzapine-treated patients had a lower incidence of parkinsonism, akathisia and dystonia compared with titrated doses of haloperidol. In the absence of detailed information on the pre-existing history of individual acute and tardive extrapyramidal movement disorders, it can not be concluded at present that olanzapine produces less tardive dyskinesia and/or other tardive extrapyramidal syndromes.



7 Acute symptoms such as sweating, insomnia, tremor, anxiety, nausea and vomiting have been reported when olanzapine is stopped abruptly.



8 In clinical trials of up to 12 weeks, plasma prolactin concentrations exceeded the upper limit of normal range in approximately 30% of olanzapine treated patients with normal baseline prolactin value. In the majority of these patients the elevations were generally mild, and remained below two times the upper limit of normal range. Generally in olanzapine-treated patients potentially associated breast- and menstrual related clinical manifestations (e.g. amenorrhoea, breast enlargement, galactorrhea in females, and gynaecomastia/breast enlargement in males) were uncommon. Potentially associated sexual function-related adverse reactions (e.g. erectile dysfunction in males and decreased libido in both genders) were commonly observed.



Long-term exposure (at least 48 weeks)



The proportion of patients who had adverse, clinically significant changes in weight gain, glucose, total/LDL/HDL cholesterol or triglycerides increased over time. In adult patients who completed 9-12 months of therapy, the rate of increase in mean blood glucose slowed after approximately 6 months.



Additional information on special populations



In clinical trials in elderly patients with dementia, olanzapine treatment was associated with a higher incidence of death and cerebrovascular adverse reactions compared to placebo (see also section 4.4). Very common adverse reactions associated with the use of olanzapine in this patient group were abnormal gait and falls. Pneumonia, increased body temperature, lethargy, erythema, visual hallucinations and urinary incontinence were observed commonly.



In clinical trials in patients with drug-induced (dopamine agonist) psychosis associated with Parkinson's disease, worsening of Parkinsonian symptomatology and hallucinations were reported very commonly and more frequently than with placebo.



In one clinical trial in patients with bipolar mania, valproate combination therapy with olanzapine resulted in an incidence of neutropenia of 4.1%; a potential contributing factor could be high plasma valproate levels. Olanzapine administered with lithium or valproate resulted in increased levels (



Paediatric populations



Olanzapine is not indicated for the treatment of children and adolescent patients below 18 years. Although no clinical studies designed to compare adolescents to adults have been conducted, data from the adolescent trials were compared to those of the adult trials.



The following table summarises the adverse reactions reported with a greater frequency in adolescent patients (aged 13-17 years) than in adult patients or adverse reactions only identified during short-term clinical trials in adolescent patients. Clinically significant weight gain (



Within each frequency grouping, adverse reactions are presented in order of decreasing seriousness. The frequency terms listed are defined as follows: Very common (









Metabolism and nutrition disorders



Very common: Weight gain9, elevated triglyceride levels10, increased appetite.



Common: Elevated cholesterol levels11




Nervous system disorders



Very common: Sedation (including: hypersomnia, lethargy, somnolence).




Gastrointestinal disorders



Common: Dry mouth




Hepato-biliary disorders



Very common: Elevations of hepatic aminotransferases (ALT/AST; see section 4.4).




Investigations



Very common: Decreased total bilirubin, increased GGT, elevated plasma prolactin levels12.



9 Following short term treatment (median duration 22 days), weight gain



10 Observed for fasting normal levels at baseline (< 1.016 mmol/l) which increased to high (



11 Changes in total fasting cholesterol levels from normal at baseline (< 4.39 mmol/l) to high (



12 Elevated plasma prolactin levels were reported in 47.4% of adolescent patients.



4.9 Overdose



Signs and symptoms



Very common symptoms in overdose (>10% incidence) include tachycardia, agitation/ aggressiveness, dysarthria, various extrapyramidal symptoms, and reduced level of consciousness ranging from sedation to coma.



Other medically significant sequelae of overdose include delirium, convulsion, coma, possible neuroleptic malignant syndrome, respiratory depression, aspiration, hypertension or hypotension, cardiac arrhythmias (< 2% of overdose cases) and cardiopulmonary arrest. Fatal outcomes have been reported for acute overdoses as low as 450 mg but survival has also been reported following acute overdose of approximately 2 g of oral olanzapine.



Management of overdose



There is no specific antidote for olanzapine. Induction of emesis is not recommended. Standard procedures for management of overdose may be indicated (i.e. gastric lavage, administration of activated charcoal). The concomitant administration of activated charcoal was shown to reduce the oral bioavailability of olanzapine by 50 to 60%.



Symptomatic treatment and monitoring of vital organ function should be instituted according to clinical presentation, including treatment of hypotension and circulatory collapse and support of respiratory function. Do not use epinephrine, dopamine, or other sympathomimetic agents with beta-agonist activity since beta stimulation may worsen hypotension. Cardiovascular monitoring is necessary to detect possible arrhythmias. Close medical supervision and monitoring should continue until the patient recovers.



5. Pharmacological Properties



5.1 Pharmacodynamic Properties



Pharmacotherapeutic group: antipsychotics; diazepines, oxazepines and thiazepines, ATC code N05A H03.



Olanzapine is an antipsychotic, antimanic and mood stabilising agent that demonstrates a broad pharmacologic profile across a number of receptor systems.



In preclinical studies, olanzapine exhibited a range of receptor affinities (Ki; < 100 nM) for serotonin 5 HT2A/2C, 5 HT3, 5 HT6; dopamine D1, D2, D3, D4, D5; cholinergic muscarinic receptors m1-m5; α1 adrenergic; and histamine H1 receptors. Animal behavioral studies with olanzapine indicated 5HT, dopamine, and cholinergic antagonism, consistent with the receptor-binding profile. Olanzapine demonstrated a greater in-vitro affinity for serotonin 5HT2 than dopamine D2 receptors and greater 5 HT2 than D2 activity in vivo, models. Electrophysiological studies demonstrated that olanzapine selectively reduced the firing of mesolimbic (A10) dopaminergic neurons, while having little effect on the striatal (A9) pathways involved in motor function. Olanzapine reduced a conditioned avoidance response, a test indicative of antipsychotic activity, at doses below those producing catalepsy, an effect indicative of motor side-effects. Unlike some other antipsychotic agents, olanzapine increases responding in an “anxiolytic” test.



In a single oral dose (10 mg) Positron Emission Tomography (PET) study in healthy volunteers, olanzapine produced a higher 5 HT2A than dopamine D2 receptor occupancy. In addition, a Single Photon Emission Computed Tomography (SPECT) imaging study in schizophrenic patients revealed that olanzapine-responsive patients had lower striatal D2 occupancy than some other antipsychotic- and risperidone-responsive patients, while being comparable to clozapine-responsive patients.



In two of two placebo and two of three comparator controlled trials with over 2,900 schizophrenic patients presenting with both positive and negative symptoms, olanzapine was associated with statistically significantly greater improvements in negative as well as positive symptoms.



In a multinational, double-blind, comparative study of schizophrenia, schizoaffective, and related disorders which included 1,481 patients with varying degrees of associated depressive symptoms (baseline mean of 16.6 on the Montgomery-Asberg Depression Rating Scale), a prospective secondary analysis of baseline to endpoint mood score change demonstrated a statistically significant improvement (p=0.001) favouring olanzapine (-6.0) versus haloperidol (-3.1).



In patients with a manic or mixed episode of bipolar disorder, olanzapine demonstrated superior efficacy to placebo and valproate semisodium (divalproex) in reduction of manic symptoms over 3 weeks. Olanzapine also demonstrated comparable efficacy results to haloperidol in terms of the proportion of patients in symptomatic remission from mania and depression at 6 and 12 weeks. In a co-therapy study of patients treated with lithium or valproate for a minimum of 2 weeks, the addition of olanzapine 10 mg (co-therapy with lithium or valproate) resulted in a greater reduction in symptoms of mania than lithium or valproate monotherapy after 6 weeks.



In a 12-month recurrence prevention study in manic episode patients who achieved remission on olanzapine and were then randomised to olanzapine or placebo, olanzapine demonstrated statistically significant superiority over placebo on the primary endpoint of bipolar recurrence. Olanzapine also showed a statistically significant advantage over placebo in terms of preventing either recurrence into mania or recurrence into depression.



In a second 12-month recurrence prevention study in manic episode patients who achieved remission with a combination of olanzapine and lithium and were then randomised to olanzapine or lithium alone, olanzapine was statistically non-inferior to lithium on the primary endpoint of bipolar recurrence (olanzapine 30.0%, lithium 38.3%; p = 0.055).



In an 18-month co-therapy study in manic or mixed episode patients stabilised with olanzapine plus a mood stabiliser (lithium or valproate), long-term olanzapine co-therapy with lithium or valproate was not statistically significantly superior to lithium or valproate alone in delaying bipolar recurrence, defined according to syndromic (diagnostic) criteria.



Paediatric population



The experience in adolescents (ages 13 to 17 years) is limited to short term efficacy data in schizophrenia (6 weeks) and mania associated with bipolar I disorder (3 weeks), involving less than 200 adolescents. Olanzapine was used as a flexible dose starting with 2.5 and ranging up to 20 mg/day. During treatment with olanzapine, adolescents gained significantly more weight compared with adults. The magnitude of changes in fasting total cholesterol, LDL cholesterol, triglycerides, and prolactin (see sections 4.4 and 4.8) were greater in adolescents than in adults. There are no data on maintenance of effect and limited data on long term safety (see sections 4.4 and 4.8).



5.2 Pharmacokinetic Properties



Olanzapine orodispersible tablet is bioequivalent to olanzapine coated tablets, with a similar rate and extent of absorption. Olanzapine orodispersible tablets may be used as an alternative to olanzapine coated tablets.



Olanzapine is well absorbed after oral administration, reaching peak plasma concentrations within 5 to 8 hours. The absorption is not affected by food. Absolute oral bioavailability relative to intravenous administration has not been determined



Olanzapine is metabolized in the liver by conjugative and oxidative pathways. The major circulating metabolite is the 10-N-glucuronide, which does not pass the blood brain barrier. Cytochromes P450-CYP1A2 and P450-CYP2D6 contribute to the formation of the N-desmethyl and 2-hydroxymethyl metabolites, both exhibited significantly less in vivo pharmacological activity than olanzapine in animal studies. The predominant pharmacologic activity is from the parent olanzapine. After oral administration, the mean terminal elimination half-life of olanzapine in healthy subjects varied on the basis of age and gender.



In healthy elderly (65 and over) versus non-elderly subjects, the mean elimination half-life was prolonged (51.8 versus 33.8 hr) and the clearance was reduced (17.5 versus 18.2 l/hr). The pharmacokinetic variability observed in the elderly is within the range for the non-elderly. In 44 patients with schizophrenia > 65 years of age, dosing from 5 to 20 mg/day was not associated with any distinguishing profile of adverse events.



In female versus male subjects the mean elimination half life was somewhat prolonged (36.7 versus 32.3 hrs) and the clearance was reduced (18.9 versus 27.3 l/hr). However, olanzapine (5-20 mg) demonstrated a comparable safety profile in female (n=467) as in male patients (n=869).



In renally impaired patients (creatinine clearance < 10 ml/min) versus healthy subjects, there was no significant difference in mean elimination half-life (37.7 versus 32.4 hr) or clearance (21.2 versus 25.0 l/hr). A mass balance study showed that approximately 57 % of radiolabelled olanzapine appeared in urine, principally as metabolites.



In smoking subjects with mild hepatic dysfunction, mean elimination half-life (39.3 hr) was prolonged and clearance (18.0 l/hr) was reduced analogous to non-smoking healthy subjects (48.8 hr and 14.1 l/hr, respectively).



In non-smoking versus smoking subjects (males and females) the mean elimination half-life was prolonged (38.6 versus 30.4 hr) and the clearance was reduced (18.6 versus 27.7 l/hr).



The plasma clearance of olanzapine is lower in elderly versus young subjects, in females versus males, and in non-smokers versus smokers. However, the magnitude of the impact of age, gender, or smoking on olanzapine clearance and half-life is small in comparison to the overall variability between individuals.



In a study of Caucasians, Japanese, and Chinese subjects, there were no differences in the pharmacokinetic parameters among the three populations.



The plasma protein binding of olanzapine was about 93 % over the concentration range of about 7 to about 1000 ng/mL. Olanzapine is bound predominantly to albumin and α1-acid-glycoprotein.



Paediatric population



Adolescents (ages 13 to 17 years): The pharmacokinetics of olanzapine are similar between adolescents and adults. In clinical studies, the average olanzapine exposure was approximately 27% higher in adolescents. Demographic differences between the adolescents and adults include a lower average body weight and fewer adolescents were smokers. Such factors pos

Ondemet 4mg Tablets (Beacon Pharmaceuticals)





1. Name Of The Medicinal Product



Ondemet 4mg Tablets


2. Qualitative And Quantitative Composition



Ondemet 4 mg



Each film-coated tablet contains 4 mg ondansetron (as hydrochloride dihydrate).



Excipients:



Each film-coated tablet contains 84.50 mg lactose monohydrate.



For a full list of excipients, see section 6.1.



3. Pharmaceutical Form



Film coated tablet



4 mg: pale yellow, round biconvex, film-coated tablet embossed with 41 on one side, diameter 7.2 mm.



4. Clinical Particulars



4.1 Therapeutic Indications



Ondansetron is indicated for the management of nausea and vomiting induced by cytotoxic chemotherapy and radiotherapy, and for the prevention of post-operative nausea and vomiting (PONV).



4.2 Posology And Method Of Administration



Oral use



For the different dosage regimens appropriate strengths and formulations are available.



Chemotherapy and radiotherapy induced nausea and vomiting



Adults



The emetogenic potential of cancer treatment varies according to the doses and combinations of chemotherapy and radiotherapy regimens used. The route of administration and dose of Ondansetron should be flexible and selected as shown below.



Emetogenic chemotherapy and radiotherapy



For patients receiving emetogenic chemotherapy or radiotherapy ondansetron can be given either by oral or intravenous administration.



For most patients receiving emetogenic chemotherapy or radiotherapy, ondansetron should initially be administered intravenously immediately before treatment, followed by 8 mg orally twelve hourly.



For oral administration: 8 mg 1-2 hours before treatment, followed by 8 mg 12 hours later.



To protect against delayed or prolonged emesis after the first 24 hours, oral treatment with ondansetron should be continued for up to 5 days after a course of treatment. The recommended dose for oral administration is 8 mg twice daily.



Highly emetogenic chemotherapy



For patients receiving highly emetogenic chemotherapy, e.g. high-dose cisplatin, ondansetron can be given by intravenous administration.



To protect against delayed or prolonged emesis after the first 24 hours, oral treatment with ondansetron should be continued for up to 5 days after a course of treatment. The recommended dose for oral administration is 8 mg twice daily.



Children (aged 2 years and over) and adolescents (< 18 years)



Experience in paediatric patients is limited. In children older than two years, ondansetron may be administered as a single intravenous dose of 5 mg/m2 over 15 minutes immediately before chemotherapy, followed by 4 mg orally twelve hours later. Oral treatment with a dose according to the body area should be continued for up to 5 days after a course of treatment. Children with a total body area between 0.6 and 1.2 m2 should receive a dosage schedule of 4 mg 3 times a day, while children with a body area above 1.2 m2 should receive 8 mg 3 times a day.



There is no experience in children younger than 2 years old.



Ondansetron film-coated tablets cannot be used in children with a total body surface below 0.6 m2.



Elderly



Ondansetron is well tolerated by patients over 65 years and no alteration of dosage, dosing frequency or route of administration are required.



Please refer also to ”Special populations”.



Post-operative nausea and vomiting (PONV)



Adults



Prevention of PONV



For the prevention of PONV ondansetron can be administered orally or by intravenous injection.



For oral administration:



16 mg one hour prior to anaesthesia.



Alternatively, 8 mg one hour prior to anaesthesia followed by two further doses of 8 mg at eight hourly intervals.



Treatment of established PONV



For the treatment of established PONV intravenous administration is recommended.



Children (aged 2 years and over) and adolescents (< 18 years)



For the prevention and treatment of PONV slow intravenous injection is recommended.



Elderly



There is limited experience in the use of ondansetron in the prevention and treatment of post-operative nausea and vomiting (PONV) in the elderly, however ondansetron is well tolerated in patients over 65 years receiving chemotherapy.



Please refer also to ”Special populations”.



Special populations



Patients with renal impairment



No alteration of daily dosage or frequency of dosing, or route of administration are required.



Patients with hepatic impairment



Clearance of Ondansetron is significantly reduced and serum half life significantly prolonged in subjects with moderate or severe impairment of hepatic function. In such patients a total daily dose of 8 mg should not be exceeded.



Patients with poor sparteine/debrisoquine metabolism



The elimination half-life of ondansetron is not altered in subjects classified as poor metabolisers of sparteine and debrisoquine. Consequently in such patients, repeat dosing will give medicinal product exposure levels no different from those of the general population. No alteration of daily dosage or frequency of dosing are required.



4.3 Contraindications



Hypersensitivity to ondansetron or to other selective 5-HT3-receptor antagonists (e.g. granisetron, dolasetron) or to any of the excipients.



4.4 Special Warnings And Precautions For Use



Hypersensitivity reactions have been reported in patients who have exhibited hypersensitivity to other selective 5-HT3 receptor antagonists.



Very rarely and predominantly with intravenous ondansetron, transient ECG changes including QT interval prolongation have been reported. Therefore caution should be exercised in patients with cardiac rhythm or conduction disturbances, in patients treated with anti-arrhythmic agents or beta-adrenergic blocking agents and in patients with significant electrolyte disturbances.



As ondansetron is known to increase large bowel transit time, patients with signs of subacute intestinal obstruction should be monitored following administration.



In patients with adenotonsillar surgery prevention of nausea and vomiting with ondansetron may mask occult bleeding. Therefore, such patients should be followed carefully after ondansetron.



Since there is little experience to date of the use of ondansetron in cardiac patients, caution should be exercised if ondansetron is coadministered with anaesthetics to patients with arrhythmias or cardiac conduction disorders or to patients who are being treated with antiarrhythmic agents or beta-blockers.



Patients with rare hereditary problems of galactose intolerance, Lapp lactase deficiency or glucose-galactose malabsorption should not take this medicine.



Ondansetron film-coated tablets should not be used in children with a total body surface below 0.6 m2.



The medicinal product should not be used for children younger than two years, as for these patients the experience is limited.



4.5 Interaction With Other Medicinal Products And Other Forms Of Interaction



There is no evidence that ondansetron either induces or inhibits the metabolism of other medicinal products commonly coadministered with it. Specific studies have shown that ondansetron does not interact with alcohol, temazepam, furosemide, alfentanil, propofol and thiopental.



Ondansetron is metabolised by multiple hepatic cytochrome P-450 enzymes: CYP3A4, CYP2D6 and CYP1A2. Due to the multiplicity of metabolic enzymes capable of metabolising ondansetron, enzyme inhibition or reduced activity of one enzyme (e.g. CYP2D6 genetic deficiency) is normally compensated by other enzymes and should result in little or no significant change in overall ondansetron clearance or dose requirement.



Phenytoin, Carbamazepine and Rifampicin: In patients treated with potent inducers of CYP3A4 (i.e. phenytoin, carbamazepine, and rifampicin), the oral clearance of ondansetron was increased and ondansetron blood concentrations were decreased.



Tramadol: Data from small studies indicate that ondansetron may reduce the analgesic effect of tramadol.



4.6 Pregnancy And Lactation



Pregnancy



Use in pregnancy has not been established and is not recommended.



To date, no other relevant epidemiological data are available. Animal studies do not indicate direct or indirect harmful effects with respect to pregnancy, embryonal/foetal development, parturition or postnatal development. If it is absolutely necessary that Ondansetron be given caution should be exercised when prescribing to pregnant women especially in the first trimester. A careful risk/benefit assessment should be performed.



Lactation



Tests have shown that ondansetron passes into the milk of lactating animals (see section 5.3). It is therefore recommended that mothers receiving ondansetron should not breast-feed their babies.



4.7 Effects On Ability To Drive And Use Machines



Ondansetron has no or negligible influence on the ability to drive and use machines.



4.8 Undesirable Effects



Adverse events are listed below by system organ class and frequency. Frequencies are defined as: very common (



The following frequencies are estimated at the standard recommended doses of ondansetron according to indication and formulation.



Immune system disorders



Rare: Immediate hypersensitivity reactions sometimes severe, including anaphylaxis.



Nervous system disorders



Very common: Headache.



Uncommon: Extrapyramidal reactions (such as oculogyric crisis/dystonic reactions) have been observed without definitive evidence of persistent clinical sequelae; seizures.



Eye disorders



Rare: Transient visual disturbances (eg. blurred vision) predominantly during rapid intravenous administration.



Very rare: transient blindness predominantly during intravenous administration.



The majority of the blindness cases reported resolved within 20 minutes. Most patients had received chemotherapeutic agents, which included cisplatin. Some cases of transient blindness were reported as cortical in origin.



Cardiac disorders



Uncommon: Arrhythmias, chest pain with or without ST segment depression, bradycardia.



Very rare: Transient ECG changes including QT interval prolongation.



Vascular disorders



Common: Sensation of warmth or flushing.



Uncommon: Hypotension.



Respiratory, thoracic and mediastinal disorders



Uncommon: Hiccups.



Gastrointestinal disorders



Common: Constipation. Local burning sensation following insertion of suppositories.



Hepatobiliary disorders



Uncommon: Asymptomatic increases in liver function tests.



These events were observed commonly in patients receiving chemotherapy with cisplatin.



4.9 Overdose



Little is known at present about overdosage with ondansetron, however, a limited number of patients received overdoses. Manifestations that have been reported include visual disturbances, severe constipation, hypotension and a vasovagal episode with transient second degree AV block. In all instances, the events resolved completely. There is no specific antidote for ondansetron, therefore in all cases of suspected overdose, symptomatic and supportive therapy should be given as appropriate.



5. Pharmacological Properties



5.1 Pharmacodynamic Properties



Pharmacotherapeutic group: Antiemetics and antinauseants, Serotonin (5-HT3) antagonists



ATC Code: A04AA01



Ondansetron is a potent, highly selective 5-HT3 receptor-antagonist.



Its precise antiemetic and antinauseal mechanism of action is not known. Chemotherapeutic agents and radiotherapy may cause release of 5-HT in the small intestine initiating a vomiting reflex by activating vagal afferents via 5-HT3 receptors. Ondansetron blocks the initiation of this reflex. Activation of vagal afferents may also cause a release of 5-HT in the area postrema, located on the floor of the fourth ventricle, and this may also promote emesis through a central mechanism. Thus, the effect of ondansetron in the management of the nausea and vomiting induced by cytotoxic chemotherapy and radiotherapy is probably due to antagonism of 5-HT3 receptors on neurons located both in the peripheral and central nervous system. The mechanisms of action in post-operative nausea and vomiting are not known but there may be common pathways with cytotoxic induced nausea and vomiting.



In a pharmaco-psychological study in volunteers ondansetron has not shown a sedative effect.



Ondansetron does not alter plasma prolactin concentrations.



The role of ondansetron in opiate-induced emesis is not yet established.



5.2 Pharmacokinetic Properties



Following oral administration, ondansetron is passively and completely absorbed from the gastrointestinal tract and undergoes first pass metabolism (bioavailability is about 60%). Peak plasma concentrations of about 30 ng/ml are attained approximately 1.5 hours after an 8 mg dose. For doses above 8 mg the increase in ondansetron systemic exposure with dose is greater than proportional; this may reflect some reduction in first pass metabolism at higher oral doses. Bioavailability, following oral administration, is slightly enhanced by the presence of food but unaffected by antacids. Studies in healthy elderly volunteers have shown slight, but clinically insignificant, age-related increases in both oral bioavailability (65%) and half-life (5 hours) of ondansetron. Gender differences were shown in the disposition of ondansetron, with females having a greater rate and extent of absorption following an oral dose and reduced systemic clearance and volume of distribution (adjusted for weight).



The disposition of ondansetron following oral, intramuscular(IM) and intravenous(IV) dosing is similar with a terminal half life of about 3 hours and steady state volume of distribution of about 140 L. Equivalent systemic exposure is achieved after IM and IV administration of ondansetron.



The protein binding of ondansetron is 70-76%. A direct effect of plasma concentration and anti-emetic effect has not been established. Ondansetron is cleared from the systemic circulation predominantly by hepatic metabolism through multiple enzymatic pathways. Less than 5% of the absorbed dose is excreted unchanged in the urine. The absence of the enzyme CYP2D6 has no effect on ondansetron's pharmacokinetics. The pharmacokinetic properties of ondansetron are unchanged on repeat dosing.



Following oral, intravenous or intramuscular dosing in patients with severe hepatic impairment, ondansetron's systemic clearance is markedly reduced with prolonged elimination half-lives (15-32 h) and an oral bioavailability approaching 100% due to reduced pre-systemic metabolism.



5.3 Preclinical Safety Data



Preclinical data revealed no special hazard for humans based on conventional studies of safety pharmacology, repeated dose toxicity, genotoxicity and carcinogenic potential.



Ondansetron and its metabolites accumulate in the milk of rats, milk/plasma-ratio was 5.2.1.



A study in cloned human cardiac ion channels has shown ondansetron has the potential to affect cardiac repolarisation via blockade of HERG potassium channels. The clinical relevance of this finding is uncertain.



6. Pharmaceutical Particulars



6.1 List Of Excipients



Tablet core:



Cellulose, microcrystalline



Lactose monohydrate



Starch, pregelatinised (maize)



Magnesium stearate



Film coating:



Hypromellose



Hydroxypropylcellulose



Propylene glycol



Sorbitan oleate



Sorbic acid



Vanillin



Titanium dioxide (E171)



Quinoline yellow (E 104).



6.2 Incompatibilities



Not applicable.



6.3 Shelf Life



3 years.



6.4 Special Precautions For Storage



This medicinal product does not require any special storage precautions.



6.5 Nature And Contents Of Container



Blister (PVC/Al)



4 mg: 6, 10, 30, 50 and 100 film coated tablets.



Not all pack sizes may be marketed.



6.6 Special Precautions For Disposal And Other Handling



No special requirements.



7. Marketing Authorisation Holder



Beacon Pharmaceuticals Ltd



The Regent



The Broadway



Crowborough



East Sussex



TN6 1DA



UK



8. Marketing Authorisation Number(S)



PL 18157/0016



9. Date Of First Authorisation/Renewal Of The Authorisation



08/06/2009



10. Date Of Revision Of The Text



08/06/2009




Tuesday, October 18, 2016

One-Alpha Capsules






One-Alpha Capsules 0.25 microgram



One-Alpha Capsules 0.5 microgram



One-Alpha Capsules 1 microgram


alfacalcidol



Please read all of this leaflet carefully before you start taking this medicine.


  • Keep this leaflet. You may need to read it again.

  • If you have any further questions, ask your doctor or pharmacist.

  • This medicine has been prescribed for you. Do not pass it on to others. It may harm them, even if their symptoms are the same as yours.

  • If any of the side effects become serious, or you notice any side effects not listed in this leaflet please tell your doctor or pharmacist.

  • In this leaflet One-Alpha capsules will be called One-Alpha.



In this leaflet:


  • 1. What One-Alpha is and what it is used for

  • 2. Before you take One-Alpha

  • 3. How to take One-Alpha

  • 4. Possible side effects

  • 5. How to store One-Alpha

  • 6. Further information




What One-Alpha Is And What It Is Used For


One-Alpha belongs to a group of medicines called vitamin D analogues. It is a type of vitamin D.


Vitamin D controls the levels of two substances in your body. These substances are called calcium and phosphate. Your body needs both of these substances for healthy bones and teeth.


One-Alpha works by increasing the amount of vitamin D in your body. This means the levels of calcium and phosphate in your body will increase too.


One-Alpha is used to treat diseases where the amount of calcium in your body needs changing. It is used to treat:


  • Changes in bone caused by kidney failure (osteodystrophy).

  • Changes to your parathyroid glands. These are small glands found in your neck. They make a substance called the parathyroid hormone. This changes the amount of calcium in your body.

    • The glands may make the amount of calcium in your blood too high. (hyperparathyroidism).
    • The glands may make the amount of calcium in your blood too low (hypoparathyroidism).

  • Low levels of calcium in the blood of newborn babies (hypocalcaemia).

  • Softening and deformity of the bones due to lack of calcium (rickets or osteomalacia).



Before You Take One-Alpha



Do not take One-Alpha


  • If you are allergic (hypersensitive) to alfacalcidol or any of the other ingredients. You can find a list of these ingredients in section 6 of this leaflet.

  • If you know you have a condition called hypercalcaemia. This means you have high levels of calcium in your blood.

  • If you know that you have a condition called calcification. This means you have high levels of calcium in your body tissues.

If you are unsure if any of the above apply to you, talk to your doctor before taking One-Alpha.




Take special care with One-Alpha


Before you take One-Alpha tell your doctor:


  • If you are taking another type of medicine called a cardiac glycoside, such as digoxin. These medicines are used to treat problems with your heart.

  • If you have any problems with your kidneys. This includes if you have kidney stones.

You may get too much calcium or phosphate in your blood when you take this medicine. Please read section 4 of this leaflet so you can spot any signs this may be happening to you. Your doctor may need to change your dose.


While you are taking One-Alpha your doctor will take regular blood tests. This is very important in children, patients with kidney problems, or patients on a high dose of medicine. This is to check the level of calcium and phosphate in your blood while you take your medicine.


Your doctor may prescribe another medicine called a phosphate binding agent to take as well as One-Alpha. This will help to keep the right amount of phosphate in your blood.




Taking other medicines


Please tell your doctor or pharmacist if you are taking, or have recently taken any other medicines. This includes any medicines which you have bought without a prescription.


You must tell your doctor or pharmacist if you are taking any of the following medicines:


  • Anticonvulsants: for epilepsy or fits. You may need a larger dose of One-Alpha.

  • Barbiturates: for sleeping disorders. You may need a larger dose of One-Alpha.

  • Cardiac glycosides, such as digoxin: for heart problems. You may get too much calcium in your blood. This may cause an abnormal heart beat.

  • Colestyramine: for lowering your cholesterol level, or to help stop some types of diarrhoea or itching. Your One-Alpha may not enter your blood as usual.

  • Thiazide diuretics, often called "water pills": for increasing the amount of water (urine) that your body makes. You may get too much calcium in your blood.



Pregnancy and breast-feeding


Please ask your doctor or pharmacist for advice before taking One-Alpha:


  • If you are pregnant, or think you are pregnant.

  • If you are breast-feeding.

Tell your doctor if you become pregnant while taking this medicine.




Driving and using machines


Usually your medicine may have very little effect on your ability to drive or use machines. Check with your doctor if you feel any side effect that may stop you from driving or using machines.




Important information about some of the ingredients of One-Alpha


One-Alpha contains:


  • Sesame oil. Sesame oil is used to make your capsules. It may rarely give you severe allergic reactions. Please read section 4 of this leaflet so you can spot any signs this may be happening to you.

Please ask your doctor if you are worried about any of the ingredients in this medicine.





How To Take One-Alpha


Always use One-Alpha exactly as your doctor has told you. You should check with your doctor or pharmacist if you are not sure.



How to take the capsule out of the blister


Press on the shiny side of the blister. The capsule will come out through the printed side of the foil. Please see the diagram.





How much One-Alpha to take


Your doctor will tell you how many capsules to take, or to give your child.


At first you will have weekly blood tests to check the levels of some substances in your blood. These tests are to check the levels of calcium, an enzyme called alkaline phosphatase or the parathyroid hormone. This is so your doctor knows that you are taking the dose that is right for you. When you are getting the correct dose you will not need blood tests so often.


You may also have other tests such as X-rays. This is also so your doctor knows that the dose is right for you.


Your doctor may adjust your dose. Your doctor may ask you to take more or less capsules depending on your test results. You may get too much calcium or phosphate in your blood when you take this medicine. Please read section 4 of this leaflet so you can spot any signs this may be happening to you. Your doctor will tell you not to take any more medicine. You will need to have some blood tests. When the blood tests are normal you can start your medicine again. It is important that you only take half the dose you had before.



Adults:


The usual starting dose is 1 microgram each day. This is either 1 brown capsule, 2 red capsules or 4 white capsules. People usually take between 1 and 3 micrograms each day.


Most people take between 0.25 and 1 microgram each day once the blood test results show the medicine is working. This is usually one white capsule, or one red capsule or one brown capsule.


If you have very low levels of calcium in your blood, your doctor may prescribe between 3 and 5 microgram each day. Your doctor may prescribe another medicine called a calcium supplement to take as well as One-Alpha. This will help to keep the right amount of calcium level in your blood.



Elderly:


The usual starting dose is 0.5 microgram each day. This is either 1 red capsule or 2 white capsules.



Children:


The dose depends on the weight of the child (called bodyweight).



  • Newborn and premature babies:


    The usual starting dose is 0.05 to 0.1 microgram per kilogram of bodyweight each day.

    If the level of calcium in their blood is very low, up to 2 micrograms per kilogram of bodyweight may be needed each day.

    A dose of 0.1 microgram per kilogram bodyweight each day is used to stop low blood calcium levels in premature babies.



  • Children weighing less than 20 kilograms:


    The usual starting dose is 0.05 microgram per kilogram bodyweight each day.



  • Children weighing more than 20 kilograms


    The usual starting dose is 1 microgram each day.



If you take more One-Alpha than you should


Tell your doctor straight away. You may need to stop taking this medicine.


You may get too much calcium or phosphate in your blood. Please read section 4 of this leaflet so you can spot any signs this may be happening to you.




If you forget to take One-Alpha


If you forget to take your medicine, take it as soon as you remember. Then take the next dose at the usual time.



If you have any further questions about taking this medicine, please ask your doctor or pharmacist.




One-Alpha Capsules Side Effects


Like all medicines, One-Alpha can cause side effects, although not everybody gets them.



Important side effects to look out for:



You must get urgent medical help if you have any of the following symptoms. You may be having an allergic reaction:



  • You have difficulty breathing


  • Your face or throat swell


  • Your skin develops a severe rash.


You should tell your doctor straight away if you spot any of the following signs which may be due to too much calcium or phosphate in your blood:



  • You need to pass water (urine) more often


  • You feel thirsty


  • You have a dry mouth, or a metallic taste in your mouth.


  • You feel weak or have pain in your muscles or bones


  • You feel sick or have constipation.



Other possible side effects:


Skin problems:


  • Itching skin

  • Rash

  • Hives (urticaria)

Kidney problems:


  • Needing to pass water (urine) less often.

  • Swelling of any parts of your body.

  • Fever with a pain in your side.

These are signs that there may be problems developing with your kidneys. Kidney stones may be forming. Kidney stones may cause a sharp spasm in one side of your lower back.


The possible side effects described in this section of the leaflet probably affect about 1 in 10,000 people. Skin problems or too much calcium in your blood are the side effects most people get.



If any of the side effects become serious, or you notice any side effects not listed in this leaflet, tell your doctor or pharmacist.




How To Store One-Alpha


  • Keep out of the reach and the sight of children.

  • Do not use the capsules after the expiry date on the carton. The expiry date is the last day of that month.

  • Do not store above 25°C.

Medicines should not be thrown away in waste water or in household waste. Please ask your pharmacist how to throw away any medicine you do not need anymore. If you do this you will help protect the environment.




Further Information



What One-Alpha contains


  • The active ingredient is alfacalcidol.

    One-Alpha Capsules 0.25 microgram contain

    0.25 microgram of alfacalcidol in each capsule.

    One-Alpha Capsules 0.5 microgram contain

    0.5 microgram of alfacalcidol in each capsule.

    One-Alpha Capsules 1 microgram contain 1 microgram of alfacalcidol in each capsule.

  • The other ingredients are sesame oil, all-rac-α-tocopherol, gelatin, glycerol, and potassium sorbate.

    The 0.25 microgram capsules also contain titanium dioxide (E171).

    The 0.5 microgram capsules also contain titanium dioxide (E171) and red iron oxide (E172).

    The 1 microgram capsules also contain black iron oxide (E172) and red iron oxide (E172).

You can find important information about some of the ingredients in your medicine near the end of section 2 of this leaflet.




What One-Alpha looks like and contents of the pack


One-Alpha Capsules 0.25 microgram are white capsules.


One-Alpha Capsules 0.5 microgram are red capsules.


One-Alpha Capsules 1 microgram are brown capsules.


One-Alpha comes in blister packs of 30 capsules.




Marketing Authorisation Holder and Manufacturer


Marketing Authorisation Holder:



LEO Laboratories Limited

Princes Risborough

Bucks.

HP27 9RR

UK


Manufacturer:



LEO Pharmaceutical Products

DK 2750

Ballerup

Denmark




This leaflet was last revised in February 2009



Registered Trade Mark




LEO


014382-08





octagam® 5%





1. Name Of The Medicinal Product



OCTAGAM



50 mg/ml solution for infusion


2. Qualitative And Quantitative Composition



2.1 Active ingredients



Human normal immunoglobulin (IVIg)



2.2 Quantitative composition



1 ml solution contains:













Protein, of which > 95% is




 



 




 



 




human normal immunoglobulin G




50




mg




IgA




< 0.2




mg



Distribution of IgG subclasses:












IgG1




ca. 60%




IgG2




ca. 32%




IgG3




ca. 7%




IgG4




ca. 1%



For a full list of excipients, see section 6.1.



3. Pharmaceutical Form



Solution for infusion.



4. Clinical Particulars



4.1 Therapeutic Indications



4.1.1 Replacement therapy in:



• Primary immunodeficiency syndromes such as:



- congenital agammaglobulinaemia and hypogammaglobulinaemia



- common variable immunodeficiency



- severe combined immunodeficiencies



- Wiskott Aldrich syndrome.



• Myeloma or chronic lymphatic leukaemia with severe secondary hypogammaglobulinaemia and recurrent infections.



• Children with congenital AIDS who have repeated bacterial infections.



4.1.2 Immunomodulation



• Idiopathic thrombocytopenic purpura (ITP) in children or adults at high risk of bleeding or prior to surgery to correct the platelet count.



• Guillain Barré syndrome



• Kawasaki disease.



4.1.3 Allogeneic bone marrow transplantation



4.2 Posology And Method Of Administration



4.2.1 Posology



The dose and dosage regimen is dependant on the indication.



In replacement therapy the dosage may need to be individualised for each patient dependant on the pharmacokinetic and clinical response.



The following dosage regimens are given as a guideline.



Replacement therapy in primary immunodeficiency syndromes:



• The dosage regimen should achieve a trough level of IgG (measured before the next infusion) of at least 4.0 - 6.0 g/l. Three to six months are required after the initiation of therapy for equilibration to occur. The recommended starting dose is 0.4 - 0.8 g/kg followed by at least 0.2 g/kg every three weeks.



• The dose required to achieve a trough level of 6.0 g/l is of the order of 0.2 - 0.8 g/kg/month.



• The dosage interval, when steady state has been reached varies from 2 to 4 weeks.



• Trough levels should be measured in order to adjust the dose and dosage interval.



Replacement therapy in myeloma or chronic lymphatic leukaemia with severe secondary hypogammaglobulinaemia and recurrent infections; replacement therapy in children with AIDS and recurrent infections:



• The recommended dose is 0.2-0.4 g/kg every three to four weeks.



Idiopathic Thrombocytopenic Purpura:



• For the treatment of an acute episode, 0.8-1.0 g/kg on day one, which may be repeated once within 3 days , or 0.4 g/kg daily for two to five days.



• The treatment can be repeated if relapse occurs.



Guillain Barré Syndrome:



• 0.4 g/kg/day for 3 to 7 days. Experience in children is limited.



Kawasaki Disease:



• 1.6-2.0 g/kg should be administered in divided doses over two to five days or 2.0 g/kg as a single dose. Patients should receive concomitant treatment with acetylsalicylic acid.



Allogeneic Bone Marrow Transplantation:



• Human normal immunoglobulin treatment can be used as part of the conditioning regimen and after the transplant. For the treatment of infections and prophylaxis of graft versus host disease, dosage is individually tailored.



• The starting dose is normally 0.5 g/kg/week, starting seven days before transplantation and for up to 3 months after transplantation.



• In the case of persistent lack of antibody production, dosage of 0.5 g/kg/month is recommended until antibody level returns to normal.



The dosage recommendations are summarised in the following table:








































Indication




Dose




Frequency of injection




Replacement therapy in primary immunodeficiency




- Starting dose:



0.4 - 0.8 g/kg



 

 


- Thereafter:



0.2 - 0.8 g/kg




every 2 - 4 weeks to obtain IgG trough level of at least 4-6 g/l




Replacement therapy in secondary immunodeficiency




0.2 - 0.4 g/kg




every 3 - 4 weeks to obtain IgG trough level of at least 4-6 g/l




Children with AIDS




0.2 – 0.4 g/kg




every 3 - 4 weeks




Immunomodulation:



Idiopathic Thrombocytopenic Purpura




 



0.8 – 1.0 g/kg



or




 



on day 1, possibly repeated once within 3 days



 


0.4 g/kg/day




for 2-5 days




Guillain Barré syndrome




0.4 g/kg/day




for 3-7 days



 




Kawasaki syndrome




1.6 – 2.0 g/kg



or




in several doses for 2 - 5 days in association with acetylsalicylic acid




 



 




2.0 g/kg




in one dose in association with acetylsalicylic acid




Allogeneic bone marrow transplantation:



- treatment of infections and prophylaxis of graft versus host disease




 



0.5 g/kg




 



every week from day -7 up to 3 months after transplantation




- Persistent lack of antibody production




0.5 g/kg




every month until IgG levels return to normal



4.2.2 Method of administration



Human normal immunoglobulin should be infused intravenously at an initial rate of 1 ml/kg/hour for 30 minutes, If well tolerated, the rate of administration may gradually be increased to a maximum of 5 ml/kg/hour.



Filtration of OCTAGAM is not required.



4.3 Contraindications



Hypersensitivity to any of the components of OCTAGAM.



Hypersensitivity to homologous immunoglobulins, especially in very rare cases of IgA deficiency, when the patient has antibodies against IgA.



4.4 Special Warnings And Precautions For Use



The product should be brought to room or body temperature before use.



The solution should be clear or slightly opalescent.



Do not use solutions that are cloudy or have deposits.



Certain severe adverse drug reactions may be related to the rate of infusion. The recommended infusion rate given under "4.2.2 Method of administration“ must be closely followed. Patients must be closely monitored and carefully observed for any symptoms throughout the infusion period.



Certain adverse reactions may occur more frequently



• in case of high rate of infusion



• in patients with hypo- or agammaglobulinaemia with or without IgA deficiency



• in patients who receive human normal immunoglobulin for the first time or, in rare cases, when the human normal immunoglobulin product is switched or when there has been a long interval since the previous infusion.



True hypersensitivity reactions are rare. They can occur in the very seldom cases of IgA deficiency with anti-IgA antibodies.



Rarely, human normal immunoglobulin can induce a fall in blood pressure with anaphylactic reaction, even in patients who had tolerated previous treatment with human normal immunoglobulin.



Potential complications can often be avoided by ensuring:



• that patients are not sensitive to human normal immunoglobulin by initially injecting the product slowly (1 ml/kg/hour);



• that patients are carefully monitored for any symptoms throughout the infusion period; in particular, patients naive to human normal immunoglobulin, patients switched from an alternative IVIg product to Octagam or when there has been a long interval since the previous infusion should be monitored during the first infusion and for the first hour after the first infusion, in order to detect potential adverse signs. All other patients should be observed for at least 20 minutes after administration.



There is clinical evidence of an association between IVIg administration and thromboembolic events such as myocardial infarction, stroke, pulmonary embolism and deep vein thromboses which is assumed to be related to a relative increase in blood viscosity through the high influx of immunoglobulin in at-risk patients. Caution should be exercised in prescribing and infusing IVIg in obese patients and in patients with pre-existing risk factors for thrombotic events (such as advanced age, hypertension, diabetes mellitus and a history of vascular disease or thrombotic episodes, patients with acquired or inherited thrombophilic disorders, patients with prolonged periods of immobilisation, severely hypovolemic patients, patients with diseases which increase blood viscosity).



Cases of acute renal failure have been reported in patients receiving IVIg therapy. In most cases, risk factors have been identified, such as pre-existing renal insufficiency, diabetes mellitus, hypovolemia, overweight, concomitant nephrotoxic medicinal products or age over 65.



In case of renal impairment, IVIg discontinuation should be considered. While these reports of renal dysfunction and acute renal failure have been associated with the use of many of the licensed IVIg products, those containing sucrose as a stabiliser accounted for a disproportionate share of the total number. In patients at risk, the use of IVIg products that do not contain sucrose may be considered.



In patient at risk for acute renal failure or thromboembolic adverse reactions, IVIg products should be administered at the minimum rate of infusion and dose practicable.



OCTAGAM contains maltose, a disaccharide sugar, which is derived from corn. Anaphylactoid / anaphylactic reactions have been reported in association with infusion of other maltose / corn starch related products. Patients known to have corn allergies should either avoid using OCTAGAM or be closely observed for signs and symptoms of acute hypersensitivity reactions.



In all patients, IVIg administration requires:



• adequate hydration prior to the initiation of the infusion of IVIg



• monitoring of urine output



• monitoring of serum creatinine levels



• avoidance of concomitant use of loop diuretics



In case of adverse reaction, either the rate of administration must be reduced or the infusion stopped. The treatment required depends on the nature and severity of the side effect.



In case of shock, standard medical treatment for shock should be implemented.



Standard measures to prevent infections resulting from the use of medicinal products prepared from human blood or plasma include selection of donors, screening of individual donations and plasma pools for specific markers of infection and the inclusion of effective manufacturing steps for the inactivation/removal of viruses. Despite this, when medicinal products prepared from human blood or plasma are administered, the possibility of transmitting infective agents cannot be totally excluded. This also applies to unknown or emerging viruses and other pathogens.



The measures taken are considered effective for enveloped viruses such as HIV, HBV and HCV.



The measures taken may be of limited value against non-enveloped viruses such as HAV and parvovirus B19.



There is a reassuring clinical experience regarding the lack of hepatitis A or parvovirus B19 transmission with immunoglobulins and it is also assumed that the antibody content makes an important contribution to the viral safety.



It is strongly recommended that every time that Octagam is administered to a patient, the name and batch number of the product are recorded in order to maintain a link between the patient and the batch of the product.



4.5 Interaction With Other Medicinal Products And Other Forms Of Interaction



The infusion line may be flushed before and after administration of OCTAGAM with either normal saline or 5% dextrose in water.



Live attenuated virus vaccines



Immunoglobulin administration may impair for a period of at least 6 weeks and up to 3 months the efficacy of live attenuated virus vaccines such as measles, rubella, mumps and varicella. After administration of this product, an interval of 3 months should elapse before vaccination with live attenuated virus vaccines. In the case of measles, this impairment may persist for up to 1 year. Therefore patients receiving measles vaccine should have their antibody status checked.



Interference with serological testing



After injection of immunoglobulin the transitory rise of the various passively transferred antibodies in the patients blood may result in misleading positive results in serological testing.



Passive transmission of antibodies to erythrocyte antigens, e.g. A, B or D may interfere with some serological tests for red cell allo-antibodies (e.g. Coombs Test), reticulocyte count and haptoglobin .



Blood Glucose Testing



Some types of blood glucose testing systems (for example, those based on the glucose dehydrogenase pyrroloquinolinequinone (GDH-PQQ) or glucose-dye-oxidoreductase methods) falsely interpret the maltose contained in Octagam as glucose. This may result in falsely elevated glucose readings and, consequently, in the inappropriate administration of insulin, resulting in life-threatening hypoglycemia. Also, cases of true hypoglycemia may go untreated if the hypoglycemic state is masked by falsely elevated glucose readings. Accordingly, when administering Octagam or other parenteral maltose- containing products, the measurement of blood glucose must be done with a glucose-specific method.



The product information of the blood glucose testing system, including that of the test strips, should be carefully reviewed to determine if the system is appropriate for use with maltose-containing parenteral products. If any uncertainty exists, contact the manufacturer of the testing system to determine if the system is appropriate for use with maltose- containing parenteral products.



4.6 Pregnancy And Lactation



The safety of this medicinal product for use in human pregnancy has not been established in controlled clinical trials and therefore should only be given with caution to pregnant woman and breast-feeding mothers. Clinical experience with immunoglobulins suggests that no harmful effects on the course of pregnancy, or on the foetus and the neonate are to be expected. Immunoglobulins are excreted into the milk and may contribute to the transfer of protective antibodies to the neonate.



4.7 Effects On Ability To Drive And Use Machines



No effects on ability to drive and use machines have been observed.



4.8 Undesirable Effects



In general, various minor allergic and hypersensitivity type of reactions and headache, chills, back pain, chest pain, fever, vomiting, cutaneous reactions, arthralgia, and nausea may occasionally occur. Reactions to intravenous immunoglobulins tend to be related to the dose and the rate of infusion.




























































MedDRA 8.1 Coded




Common



> 1% - <10%




Uncommon



> 0.1% - <1%




Very Rare



< 0.01%




Blood and lymphatic system disorders




 



 




 



 




leukopenia;



haemolytic anaemia




Immune system disorders




hypersensitivity




 



 




anaphylactic shock;



anaphylactic reaction;



anaphylactoid reaction;



angioneurotic oedema;



face oedema




Psychiatric disorders




 



 




 



 




agitation




Nervous system disorders




headache




 



 




cerebrovascular accident;



meningitis aseptic;



migraine;



dizziness;



paraesthesia




Cardiac disorders




 



 




 



 




myocardial infarction;



tachycardia;



palpitations;



cyanosis




Vascular disorders




 



 




 



 




thrombosis;



peripheral circulatory failure;



hypotension;



hypertension




Respiratory, thoracic and mediastinal disorders




 



 




 



 




respiratory failure;



pulmonary embolism;



pulmonary oedema;



bronchospasm;



dyspnoea;



cough




Gastrointestinal disorders




nausea




 



 




vomiting;



diarrhoea;



abdominal pain




Skin and subcutaneous tissue disorders




 



 




eczema;




urticaria;



rash;



rash erythematous;



dermatitis;



pruritus;



alopecia




Musculoskeletal and connective tissue disorders




 



 




back pain




arthralgia;



myalgia




Renal and urinary disorders




 



 




 



 




renal failure acute




General disorders and administration site conditions




fever;



fatigue;



injection site reaction




chills;



chest pain




hot flush;



flushing;



hyperhidrosis



malaise




Investigations




 



 




 



 




hepatic enzymes increased;



blood glucose false positive;



blood creatinine increased



Very rarely Octagam may cause a sudden fall in blood pressure and, in isolated cases, anaphylactic shock, even when the patient has shown no hypersensitivity to previous administration.



Standard measures are taken to prevent infections resulting from the use of medicinal products prepared from human blood or plasma. Despite this, when medicinal products prepared from human blood or plasma are administered, the possibility of transmitting infective agents cannot be totally excluded. This also applies to unknown or emerging viruses and other pathogens. For safety with respect to transmissible agents, see 4.4.



4.9 Overdose



Overdose may lead to fluid overload and hyperviscosity, particularly in patients at risk, including elderly patients or patients with renal impairment.



5. Pharmacological Properties



5.1 Pharmacodynamic Properties



Pharmacotherapeutic group: immune sera and immunoglobulins: immunoglobulins, normal human, for intravascular administration



ATC code: J06B A02



Human normal immunoglobulin contains mainly immunoglobulin G (IgG) with a broad spectrum of antibodies against infectious agents.



Human normal immunoglobulin contains the IgG antibodies present in the normal population.



It is prepared from pooled material from not fewer than 3500 donations. It has a distribution of immunoglobulin G-subclasses closely proportional to that in native human plasma. Adequate doses of this medicinal product may restore abnormally low immunoglobulin G level to the normal range.



The mechanism of action in indications other than replacement therapy is not fully elucidated, but includes immunomodulatory effects.



5.2 Pharmacokinetic Properties



Human normal immunoglobulin is immediately and completely bioavailable in the recipient's circulation after intravenous administration. It is distributed relatively rapidly between plasma and extravascular fluid, after approximately 3-5 days an equilibrium is reached between the intra- and extravascular compartments.



Human normal immunoglobulin has a half-life of about 40 days. This half-life may vary from patient to patient, in particular in primary immunodeficiency.



IgG and IgG-complexes are broken down in cells of the reticuloendothelial system.



5.3 Preclinical Safety Data



Immunoglobulins are normal constituents of the human body. In animals, acute toxicity testing is of no relevance. Repeated dose toxicity testing and embryo-foetal toxicity studies are impracticable. Effects of the product on the immune system of the newborn have not been studied.



Virus inactivation by the SD method is carried out with TNBP and Octoxynol (Triton X-100). The maximum permitted amounts in the final product are



Since clinical experience provides no hint for tumorigenic or mutagenic effects of immunoglobulins, experimental studies, particularly in heterogolous species, are not considered necessary.



6. Pharmaceutical Particulars



6.1 List Of Excipients
















Maltose




100 mg/ml




 




Octoxynol (Triton X-100)




< 5 µg/ml




 




TNBP [Tri n-butyl phosphate]




< 1 µg/ml




 




Water for injections




ad 1ml




 



6.2 Incompatibilities



This medicinal product must not be mixed with other medicinal products.



6.3 Shelf Life



2 years at +2 °C to +25 °C.



6.4 Special Precautions For Storage



The product should be stored and transported at +2°C to +25°C.



Do not freeze.



Keep container in the outer carton in order to protect from light.



Do not use after expiry date.



Because of the possibility of bacterial contamination, any remaining contents must be discarded.



Keep out of the reach of children.



6.5 Nature And Contents Of Container



















Package size




Contents




Container




Octagam 2.5 g




50 ml




70 ml infusion bottle




Octagam 5 g




100 ml




100 ml infusion bottle




Octagam 10 g




200 ml




250 ml infusion bottle




Octagam 25 g




500 ml




500 ml infusion bottle



The primary container is made of Ph. Eur. type II glass closed with bromobutyl rubber stopper.



Components used in the packaging of OCTAGAM are latex-free.



6.6 Special Precautions For Disposal And Other Handling



Any unused product or waste material should be disposed of in accordance with local requirements.



7. Marketing Authorisation Holder



OCTAPHARMA LTD.



The Zenith Building



26 Spring Gardens



Manchester



M2 1AB



U.K.



8. Marketing Authorisation Number(S)



10673/0006



9. Date Of First Authorisation/Renewal Of The Authorisation



Date of first authorisation: May 21st, 1997



Date of last renewal: May 21st, 2007



10. Date Of Revision Of The Text



13/01/2009