Amlate Tablets
Clinical Summary
Quick overview from the medicine insert
Indication
Treatment of angina pectoris and mild-to-moderate hypertension.
Dosage (summary)
Initial dose 5 mg once daily, may increase to 10 mg after 10-14 days.
Onset of Action / Duration
Onset: 6-12 hours, Duration: 24 hours
Special Populations
- Elderly
- Renal impairment
- Hepatic impairment
Pregnancy & Breastfeeding
Contraindicated in pregnancy and lactation.
Key Drug Interactions
- CYP3A4 inhibitors
- Grapefruit juice
- Tacrolimus
Contraindications
- Hypersensitivity to amlodipine
- Severe hypotension
- Shock
- Aortic stenosis
- Heart failure after myocardial infarction
Common side effects
- Dizziness
- Headache
- Palpitations
- Nausea
- Oedema
Counselling Points
- Monitor for dizziness or fatigue
- Avoid grapefruit juice
- Gradual dose reduction recommended upon discontinuation
Serious warnings
- Caution in hypertensive crisis
- Risk of increased angina or myocardial infarction
- Caution in heart failure
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Clinical Particulars
Section 4 of the official insert — extracted exactly as issued, no alterations
4.1 Therapeutic indications
AMLATE is indicated for:
- The treatment of angina pectoris
- The treatment of mild-to moderate hypertension, alone or in combination with other antihypertensives
4.2 Posology and method of administration
Hypertension and Angina Pectoris
Adults: An initial dose of 5 mg AMLATE once daily is recommended, which may be increased to a maximum dose of 10 mg once a day, after 10-14 days of therapy if there is no improvement.
No dose adjustment of AMLATE is required during combined administration of thiazide diuretics, beta-blockers, or angiotensin-converting enzyme inhibitors.
Although no u201crebound effectu201d has been reported upon discontinuation of AMLATE, a gradual decrease of dosage with medical practitioner supervision is recommended.
Renal impairment
In patients with mild renal impairment, AMLATE may be used at normal doses. In patients with severe renal impairment, AMLATE dosages may need to be reduced.
Liver impairment
Amlodipine half-life is prolonged in patients with impaired liver function. AMLATE should therefore be administered at lower (5 mg) initial dose in these patients.
Elderly patients
Elderly patients should start AMLATE therapy at a lower dose.
4.3 Contraindications
Hypersensitivity to amlodipine, other dihydropyridines or to any of the excipients.
Pregnancy and lactation.
Severe hypotension.
Shock (including cardiogenic shock).
Obstruction of the outflow tract of the left ventricle (e.g. high grade aortic stenosis).
Haemodynamically unstable heart failure after acute myocardial infarction.
4.4 Special warnings and precautions for use
The safety and efficacy of AMLATE in hypertensive crisis has not been established.
Use in the elderly
Amlodipine clearance is decreased (40-60 %) in the elderly, which results in increased amlodipine concentrations in the area under the concentration-time curve (AUC) and elimination half-life. Therefore, elderly patients should start AMLATE therapy at a lower dose.
Use in renal failure
Although amlodipine is excreted primarily via the kidney, mild renal impairment does not appear to have an effect on the plasma concentrations. Severe renal impairment may however require a dosage reduction. Amlodipine is not dialysable.
Use in impaired hepatic function
The half-life of amlodipine is significantly prolonged in patients with impaired hepatic function. AMLATE should therefore be administered at lower doses in these patients.
Use in children
Safety and efficacy has not been established.
Use in heart failure
Patients with heart failure should be treated with caution. An increased incidence of pulmonary oedema has been reported. AMLATE may have a negative inotropic effect. AUC of amlodipine may increase in patients with heart failure. Calcium channel blockers, including AMLATE, should be used with caution in patients with congestive heart failure, as they may increase the risk of future cardiovascular events and mortality.
Porphyria
Safety has not been established.
Hypotension
Symptomatic hypotension is possible, particularly in patients with severe aortic stenosis.
Increased angina or myocardial infarction
Exacerbation of angina and acute myocardial infarction can develop after starting or increasing the dose of AMLATE, particularly in patients with severe obstructive coronary artery disease.
Beta-blocker withdrawal
Amlodipine will not protect against the consequences of abrupt beta-blocker withdrawal; gradual beta-blocker dose reduction is recommended.
4.5 Interactions with other medicines
In animals, lethal ventricular fibrillation and cardiovascular collapse are observed in association with hyperkalemia after administration of verapamil and intravenous dantrolene. Due to risk of hyperkalemia, it is recommended that the co-administration of calcium-channel blockers such as AMLATE be avoided in patients susceptible to malignant hyperthermia and in the management of malignant hyperthermia.
Administration of AMLATE with grapefruit or grapefruit juice is not recommended as bioavailability may be increased in some patients resulting in increased blood pressure lowering effects.
Amlodipine is extensively metabolised in the liver by the cytochrome P450 isoenzyme CYP3A4, and interactions may occur with other medicines, such as quinidine, sharing the same metabolic pathway. In one study, quinidine appeared to inhibit nifedipine (a calcium-channel blocker) metabolism resulting in increased serum concentrations of nifedipine; quinidine concentrations were unchanged. However, conflicting effects on serum-quinidine concentrations have been reported.
Concomitant use of AMLATE with strong or moderate CYP3A4 inhibitors (protease inhibitors, azole antifungals (ketoconazole, itraconazole, voriconazole), macrolides like erythromycin or clarithromycin, verapamil, diltiazem and ritonavir) may give rise to significant increase in amlodipine exposure. The clinical translation of these pharmacokinetic variations may be more pronounced in the elderly. Clinical monitoring and dose adjustment may thus be required.
There are no data available regarding the effect of CYP3A4 inducers on amlodipine. The concomitant use of CYP3A4 inducers (e.g. rifampicin, hypericum perforatum, carbamazepine, phenytoin) may give a lower plasma concentration of amlodipine. The effects of dihydropyridine calcium-channel blockers such as AMLATE may be reduced by enzyme-inducing antiepileptics such as carbamazepine, phenobarbital, and phenytoin. In contrast, sodium valproate has been reported to increase plasma-nimodipine (a calcium-channel blocker) concentrations.
AMLATE should be used with caution together with CYP3A4 inducers. The blood pressure lowering effects of AMLATE adds to the blood pressure-lowering effects of other medicines with antihypertensive properties. Enhanced antihypertensive effects may be seen if AMLATE is used with medicines such as antipsychotics that cause hypotension. Procainamide may enhance the effects of antihypertensives.
There is a risk of increased tacrolimus blood levels when co-administered with AMLATE but the pharmacokinetic mechanism of this interaction is not fully understood. In order to avoid toxicity of tacrolimus, administration of AMLATE in a patient treated with tacrolimus requires monitoring of tacrolimus blood levels and dose adjustment of tacrolimus when appropriate.
No interaction studies have been conducted with ciclosporin and amlodipine in healthy volunteers or other populations, with the exception of renal transplant patients, where variable trough concentration increases (average 0 % - 40 %) of ciclosporin were observed. Consideration should be given to monitoring ciclosporin levels in renal transplant patients on AMLATE, and ciclosporin dose reductions should be made as necessary.
Co-administration of multiple doses of 10 mg of amlodipine with 80 mg simvastatin resulted in a 77 % increase in exposure to simvastatin compared to simvastatin alone. Limit the dose of simvastatin in patients on amlodipine to 20 mg daily.
Lithium neurotoxicity has been reported during co-administration of lithium and the calcium-channel blockers verapamil or diltiazem. Concurrent use of lithium with AMLATE potentially may result in neurotoxicity in the form of nausea, vomiting, diarrhoea, ataxia, tremors, and/or tinnitus; caution is recommended.
Concurrent administration of sublingual nitroglycerin, long acting nitrates, beta-blockers or other antianginal agents with AMLATE may produce additive antihypertensive and antianginal effects. Sublingual nitroglycerin may be used as needed to abort acute angina attacks during AMLATE therapy. Nitrate medication may be used during AMLATE therapy for angina prophylaxis.
In vitro data indicate that amlodipine has no effect on the human plasma protein binding of digoxin, phenytoin, warfarin, and indomethacin. In clinical interaction studies, amlodipine did not affect the pharmacokinetics of atorvastatin, digoxin or warfarin. Co-administration of amlodipine with warfarin did not change the warfarin prothrombin response time. Studies have indicated that the co-administration of amlodipine with digoxin did not change the serum digoxin levels or digoxin renal clearance in normal volunteers, and that co-administration of cimetidine did not alter the pharmacokinetics of amlodipine.
4.6 Fertility, pregnancy and lactation
AMLATE is contraindicated in pregnancy and lactation (see CONTRA-INDICATIONS).
4.7 Effects on ability to drive and use machines
AMLATE can have minor or moderate influence on the ability to drive and use machines. If patients taking AMLATE suffer from dizziness, headache, fatigue or nausea their ability to react may be impaired. Caution is recommended especially at the start of treatment.
4.8 Undesirable effects
Blood and the lymphatic system disorders
Less Frequent: Thrombocytopenia, leucopenia, blood dyscrasias, haemorrhagic complications in surgical patients
Immune system disorders
Less Frequent: Allergic reactions, angioedema, erythema multiforme
Metabolism and nutrition disorders
Less Frequent: Hyperglycaemia
Psychiatric disorders
Less Frequent: Depression, mood changes (including anxiety), insomnia, confusion
Nervous system disorders
Frequent: Dizziness, headache, somnolence
Less Frequent: Hypertonia, hypoaesthesia/paraesthesia, peripheral neuropathy, syncope, tremor, dysgeusia
Eye disorders
Frequent: Visual disturbance (including diplopia)
Ear and labyrinth disorders
Less Frequent: Tinnitus
Cardiac disorders
Frequent: Palpitations
Less Frequent: Myocardial infarction, dysrhythmia (including bradycardia, ventricular tachycardia and atrial fibrillation)
Vascular disorders
Frequent: Flushing
Less Frequent: Hypotension (including orthostatic hypotension), vasculitis
Respiratory, thoracic and mediastinal disorders
Frequent: Dyspnoea
Less Frequent: Coughing, rhinitis
Gastrointestinal disorders
Frequent: Nausea, abdominal pain, dyspepsia, altered bowel habits (including diarrhoea and constipation)
Less Frequent: Vomiting, gingival hyperplasia, pancreatitis, gastritis, dry mouth
Hepato-biliary disorders
Less Frequent: Hepatitis, jaundice, raised liver enzymes (mostly consistent with cholestasis)
Skin and subcutaneous tissue disorders
Less Frequent: Erythema multiforme, exfoliative dermatitis, Stevens-Johnson syndrome, photosensitivity, alopecia, purpura, skin discolouration, hyperhidrosis, pruritus, rash, exanthema, urticaria
Musculoskeletal, connective tissue and bone disorders
Frequent: Ankle swelling, muscle cramps
Less Frequent: Arthralgia, myalgia, back pain
Renal and urinary disorders
Less Frequent: Increased urinary frequency, micturition disorder, nocturia
Reproductive system and breast disorders
Less Frequent: Gynaecomastia, impotence
General disorders and administration site conditions
Frequent: Oedema, peripheral oedema, fatigue, asthenia
Less Frequent: Chest pain, pain, malaise
Investigations
Less Frequent: Weight increased, weight decreased
4.9 Overdose
Gross overdosage could result in excessive peripheral vasodilation and possibly reflex tachycardia. Marked and probably prolonged systemic hypotension up to and including shock with fatal outcome have been reported.
Clinically significant hypotension due to AMLATE overdosage requires active cardiovascular support including frequent monitoring of cardiac and respiratory function, elevation of extremities and attention to circulating fluid volume and urine output. A vasoconstrictor may be helpful in restoring vascular tone and blood pressure, provided that there is no contraindication to its use. Intravenous calcium gluconate may be of benefit in reversing the effects of calcium channel blockade. In healthy volunteers the use of charcoal up to 2 hours after administration of amlodipine 10 mg has been shown to reduce the absorption rate of amlodipine. Since amlodipine is highly protein-bound, dialysis is not likely to be of benefit. TREATMENT IS SYMPTOMATIC AND SUPPORTIVE.