Calcium-channel blockers: Nursing pharmacology

Last updated: April 11, 2025

Calcium-channel blockers: Nursing pharmacology

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Pharmacokinetics - Absorption: Nursing pharmacology
Pharmacokinetics - Distribution: Nursing pharmacology
Pharmacokinetics - Metabolism: Nursing pharmacology
Pharmacokinetics - Elimination: Nursing pharmacology
Pharmacodynamics: Nursing pharmacology
Anthelmintics: Nursing pharmacology
Antibiotics - Aminoglycosides: Nursing pharmacology
Antibiotics - Beta lactam and beta lactamase inhibitor combinations: Nursing pharmacology
Antibiotics - Antimycobacterials: Nursing pharmacology
Antibiotics - Carbapenems and monobactams: Nursing pharmacology
Antibiotics - Cephalosporins: Nursing pharmacology
Antibiotics - Cyclic lipopeptides: Nursing pharmacology
Antibiotics - Fluoroquinolones: Nursing pharmacology
Antibiotics - Lincosamides: Nursing pharmacology
Antibiotics - Glycopeptides: Nursing pharmacology
Antibiotics - Macrolides: Nursing pharmacology
Antibiotics - Metronidazole: Nursing pharmacology
Antibiotics - Oxazolidinones: Nursing pharmacology
Antibiotics - Penicillins: Nursing pharmacology
Antibiotics - Tetracyclines and glycylcyclines: Nursing pharmacology
Antibiotics - Trimethoprim and sulfonamides: Nursing pharmacology
Antibiotics - Polymyxins: Nursing pharmacology
Antimalarials: Nursing pharmacology
Antiretrovirals for HIV/AIDS - CCR5 antagonists, fusion inhibitors, and attachment inhibitors: Nursing pharmacology
Antiprotozoals: Nursing pharmacology
Antiretrovirals for HIV/AIDS - NRTIs and NNRTIs: Nursing pharmacology
Antiretrovirals for HIV/AIDS - Integrase strand transfer inhibitors: Nursing pharmacology
Antivirals for herpesviruses: Nursing pharmacology
Antiretrovirals for HIV/AIDS - Protease inhibitors: Nursing pharmacology
Antivirals for hepatitis B and C: Nursing pharmacology
Antivirals for influenza: Nursing pharmacology
Medications for respiratory syncytial virus (RSV): Nursing pharmacology
Chloramphenicol: Nursing pharmacology
Alpha-1 adrenergic blockers: Nursing pharmacology
Alpha-2 adrenergic agonists: Nursing pharmacology
Angiotensin II receptor blockers (ARBs): Nursing pharmacology
Angiotensin-converting enzyme (ACE) inhibitors: Nursing pharmacology
Antiarrhythmics: Nursing pharmacology
Beta-adrenergic blockers: Nursing pharmacology
Calcium-channel blockers: Nursing pharmacology
Cardiac glycosides: Nursing pharmacology
Direct-acting vasodilators: Nursing pharmacology
Nitrates: Nursing pharmacology
Sympathomimetic medications: Nursing pharmacology
Glucocorticoids and mineralocorticoids: Nursing pharmacology
Insulin: Nursing pharmacology
Medications affecting the parathyroid glands: Nursing pharmacology
Medications for antidiuretic hormone (ADH) disorders: Nursing pharmacology
Medications for thyroid disorders: Nursing pharmacology
Medications for growth hormone disorders: Nursing pharmacology
Oral antidiabetic medications - Biguanides and thiazolidinediones: Nursing pharmacology
Oral antidiabetic medications - Alpha-glucosidase inhibitors: Nursing pharmacology
Oral antidiabetic medications - DPP-4 inhibitors: Nursing pharmacology
Oral antidiabetic medications - Sulfonylureas and meglitinides: Nursing pharmacology
Oral antidiabetic medications - Sodium-glucose co-transporter-2 (SGLT-2) inhibitors: Nursing pharmacology
Antiglaucoma medications: Nursing pharmacology
Mydriatics and cycloplegics: Nursing pharmacology
Eye anesthetics: Nursing pharmacology
Ophthalmic anti-inflammatories and anti-infectives: Nursing pharmacology
Antacids: Nursing pharmacology
Antidiarrheals: Nursing pharmacology
Laxatives: Nursing pharmacology
Histamine H2 antagonists: Nursing pharmacology
Antihyperlipidemics - Bile acid sequestrants and cholesterol absorption inhibitors: Nursing pharmacology
Anticoagulants - Warfarin: Nursing pharmacology
Antihyperlipidemics - Fibrates: Nursing pharmacology
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Antiplatelet agents: Nursing pharmacology
Antihyperlipidemics - Miscellaneous: Nursing pharmacology
Blood products: Nursing pharmacology
Hematopoietic growth factors: Nursing pharmacology
Iron preparations: Nursing pharmacology
Hemostatics: Nursing pharmacology
Thrombolytics: Nursing pharmacology
Antirejection immunosuppressants: Nursing pharmacology
Biologic agents: Nursing pharmacology
Immunoglobulins: Nursing pharmacology
Disease-modifying therapy for multiple sclerosis: Nursing pharmacology
Immunosuppressants for autoimmune diseases: Nursing pharmacology
Immunomodulators: Nursing pharmacology
Vaccines: Nursing pharmacology
Debridement agents: Nursing pharmacology
Keratolytics: Nursing pharmacology
Antibiotics - Topical: Nursing pharmacology
Medications for acne vulgaris: Nursing pharmacology
Antifungals - Topical: Nursing pharmacology
Corticosteroids - Topical: Nursing pharmacology
Analgesics for obstetrics: Nursing pharmacology
Ergot alkaloids: Nursing pharmacology
Neonatal eye prophylaxis: Nursing pharmacology
Lung surfactants and antenatal corticosteroids: Nursing pharmacology
Oxytocin: Nursing pharmacology
Phytonadione (Vitamin K1): Nursing pharmacology
Rho(D) immune globulin: Nursing pharmacology
Prostaglandins: Nursing pharmacology
Tocolytics: Nursing pharmacology
Antidepressants - SSRIs and SNRIs: Nursing pharmacology
Antidepressants - Tricyclic antidepressants (TCAs) and monoamine oxidase inhibitors (MAOIs): Nursing pharmacology
Anxiolytics and sedative-hypnotics: Nursing pharmacology
Antipsychotics: Nursing pharmacology
Stimulant medications for attention-deficit hyperactivity disorder (ADHD): Nursing pharmacology
Mood stabilizers: Nursing pharmacology
Acetylcholinesterase inhibitors for myasthenia gravis: Nursing pharmacology
Analgesics: Nursing pharmacology
Medications for Alzheimer disease: Nursing pharmacology
Antiepileptics: Nursing pharmacology
Medications for migraines: Nursing pharmacology
Skeletal muscle relaxants: Nursing pharmacology
Alkylating agents: Nursing pharmacology
Angiogenesis inhibitors: Nursing pharmacology
Antitumor antibiotics: Nursing pharmacology
Antimetabolites: Nursing pharmacology
Hormones and hormone modulators for cancer: Nursing pharmacology
Other antineoplastics: Nursing pharmacology
Platinum-based agents: Nursing pharmacology
Plant extracts for chemotherapy: Nursing pharmacology
Antihistamines: Nursing pharmacology
Bronchodilators: Nursing pharmacology
Mast cell stabilizers - Inhaled: Nursing pharmacology
Corticosteroids - Inhaled: Nursing pharmacology
Leukotriene modifiers: Nursing pharmacology
Medications to control airway secretions: Nursing pharmacology
Respiratory stimulants: Nursing pharmacology
Oxygen therapy: Nursing pharmacology

Notes

CALCIUM-CHANNEL BLOCKERS
DRUG NAME
Dihydropyridines: nifedipine (Procardia, Adalat), amlodipine (Norvasc), clevidipine (Cleviprex), nicardipine (Cardene), felodipine (Plendil), nimodipine (Nimotop)

Non-dihydropyridines: diltiazem (Cardizem), verapamil (Calan, Isoptin)
CLASS
Calcium Channel Blockers (CCB)
MECHANISM OF ACTION
  • Block the entry of calcium into the cells
  • Reduce the contraction of vascular smooth muscle and cardiac muscle
    • Dilate arterioles, and reduce blood pressure and peripheral vascular resistance
    • Dilate coronary vessels and increase oxygen supply to the heart
    • Reduce force of contraction of cardiac muscles and reduce oxygen demand of the heart
  • Reduce the firing and conduction of impulse through the SA and AV nodes in the heart
INDICATIONS
  • Cardiac arrhythmia, hypertension, angina pectoris, tocolysis in preterm labor, Raynaud’s phenomenon, migraine prophylaxis
  • Nimodipine: subarachnoid hemorrhage
ROUTE(S) OF ADMINISTRATION
  • PO
  • IV
SIDE EFFECTS
  • General: headache, dizziness, flushing of the skin, peripheral edema, hypotension
  • Dihydropyridines: reflex tachycardia, gingival hyperplasia
  • Non-dihydropyridines: bradycardia, constipation and hyperprolactinemia
CONTRAINDICATIONS AND CAUTIONS
  • Pre-existing bradycardia
  • Heart block
  • Heart failure
  • Use with caution: hepatic and renal disease
  • Interactions: digoxin, grapefruit
NURSING CONSIDERATIONS: CALCIUM-CHANNEL BLOCKERS
ASSESSMENT AND MONITORING
  • Vital signs, CBC, sodium, potassium, creatinine, BUN, liver function tests, and urinalysis, ECG
  • For angina: frequency and severity of symptoms
  • Monitor for side effects and therapeutic response
CLIENT EDUCATION
  • Purpose of medication
  • Self-administration
    • Take exactly as prescribed, do not stop abruptly
    • Swallow whole; do not divide, crush, or chew
    • Avoid grapefruit juice and limit caffeine
  • Side effects
    • Hypotension and reflex tachycardia: change positions slowly
    • Peripheral edema: elevate legs
    • Constipation: increase fiber and fluids
    • Gingival hyperplasia: good dental hygiene
  • Lifestyle modifications for cardiovascular health
  • Heart rate and blood pressure self-monitoring
  • Report persistent side effects, hypotension, bradycardia; seek medical attention if angina not relieved by rest or medication
Author: Jahnavi Narayanan, MBBS
Illustrator: Robyn Hughes, MScBMC

Transcript

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Calcium channel blockers are medications that are primarily used to treat cardiac arrhythmias, hypertension, and angina pectoris. Calcium channel blockers are used to a lesser extent for prophylaxis of migraines and for symptomatic treatment of Raynaud phenomenon, which is caused by reduced blood flow in tiny peripheral vessels. Finally, calcium channel blockers also relax uterine smooth muscle, which is useful to prevent premature uterine contractions, and this can help delay preterm labor.

Now, calcium channel blockers can be administered orally or intravenously, and are divided into two main groups, dihydropyridines and non-dihydropyridines. Dihydropyridines include amlodipine, nicardipine, nifedipine, felodipine, and clevidipine, which have a more potent action on the blood vessels, specifically the arterioles, than the heart. As a result, they’re preferred to treat hypertension. Another dihydropyridine is nimodipine, which has the added benefit of being able to cross over the blood-brain barrier. So, it can be used to prevent or treat cerebral vasospasm caused by an aneurysmal subarachnoid hemorrhage.

On the other hand, non-dihydropyridines include verapamil and diltiazem, which have a more potent action on the heart than the blood vessels. Verapamil is highly selective for cardiac calcium channels; and, thus, is mainly used to treat angina pectoris and arrhythmias. Diltiazem is equally good at blocking both cardiac and vascular calcium channels, and so it’s effective in hypertension and arrhythmias.

Now, once administered, calcium channel blockers block voltage-gated calcium channels, and they act by decreasing the amount of calcium entering the cell.

Normally, calcium is required for the contraction of both the cardiac muscles and the vascular smooth muscles. So, the decreased calcium reduces the muscle’s ability to contract, ultimately relaxing them.

Now, calcium channel blockers relax vascular, particularly arterial, smooth muscles, which helps reduce the blood pressure, and peripheral vascular resistance, or the afterload, which is the pressure that the heart must work against to eject the blood. At the same time, in the heart, calcium channel blockers relax the coronary vessels, which improves the oxygen delivery to the heart; and they also reduce the force of contraction of the cardiac muscles, which reduces the oxygen demand of the heart. Additionally, calcium channel blockers prevent the depolarization of cardiac pacemaker cells in the SA and AV nodes, which are responsible for generating and maintaining the heart rate. This way, these medications reduce the firing and conduction of the impulses through these nodes, eventually decreasing the heart rate.

Now, the vasodilatory action of calcium channel blockers may also lead to some side effects, including headache, dizziness, flushing of the skin, peripheral edema, and hypotension, which is more common with dihydropyridines. Moreover, hypotension can trigger reflex tachycardia, in order to maintain adequate tissue perfusion. Finally, dihydropyridines can also cause gingival hyperplasia, the cause of which is still unclear.

On the other hand, non-dihydropyridines decrease the heart rate and contractility, so they can cause additional side effects like bradycardia, constipation, and hyperprolactinemia.

Sources

  1. "Karch’s Focus on Nursing Pharmacology, 9th edition" LWW (2023)
  2. "Pharmacology: A Patient-Centered Nursing Process Approach, 9th edition" Elsevier Canada (2020)
  3. "Mosby’s 2023 Nursing Drug Reference, 36th edition" Mosby (2022)
  4. "Saunders Comprehensive Review for the NCLEX-RN, 9th Edition" Saunders (2022)
  5. "Calcium Channel Blocker Toxicity: A Practical Approach" J Multidiscip Healthc (2022)
  6. "Calcium channel blocker in patients with chronic kidney disease" Clin Exp Nephrol (2022)
  7. "Trends in Calcium Channel Blocker Use in Patients with Heart Failure with Reduced Ejection Fraction and Comorbid Atrial Fibrillation" Am J Med (2021)