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Drugs Affecting the Cardiovascular System
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Drugs Affecting the following disorders
CHF Disrythmias Angina Hypertension Hypercholestremia
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Congestive Heart Failure
The Problem: Heart cannot pump enough blood Causes: Htn, arteriosclerosis, valvular disease The Solution(s): Vasodilator Diuretics Inotropes } Goal is to increase cardiac output
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Congestive Heart Failure
The Problem: Heart cannot pump enough blood Causes: Htn, arteriosclerosis, valvular disease The Solution(s): Vasodilator Diuretics Inotropes } Goal is to increase cardiac output
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Vasodilators How do they work?
Mechanism 1: ACE converts Angiotensin I to Angiotensin II Angio II has effects as shown ACE inhibitors decrease A II End Results: Decrease fluid retention, afterload Examples: Enalapril, Captapril Angiotensin I ACE Angiotensin II ↑ Sympathetic Output ↑ Bradykinin Constrict Vascular Smooth Muscle ↑ Na+/H20 Retention
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Other Vasodilators: Mechanism 2: Direct smooth muscle relaxants
Nitrates Venous dilators Reduce preload Eg: sodium nitropruside Calcium channel blockers Amlodipine, felodipene
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Diuretics Bottom line: they decrease fluid volumes Four Flavours:
Carbonic anhydrase inhibitors Loop diuretics Thiazide diuretics K+-sparing
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Diuretics: Sites of Action
Carbonic Anhydrase Inhibitors Eg: Acetazolamide Thiazides Eg: Chlorothiazide Na+ Cl- HCO3- K+ - Sparing Eg: ? Na+ Na+ Cl- K+ K+ Loop Diuretics Eg: Furosemide
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Inotropes Increase force of contraction
All increase intracellular cardiac Ca++ concentration Eg: Digitalis (cardiac glycoside) Dobutamine (β-adrenergic agonist) Amrinone (PDE inhibitor)
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How Digitalis Works Out Na+ Na+ ATP ADP + Pi Ca++ K+ Ca++ In Digitalis
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Drugs for Treating Arrhythmias
The Problem: Abnormal cardiac impulse formation/conduction Can be atrial, supraventricular, ventricular in origin The solution Several different classes of drugs All affect cardiac action potentials
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Cardiac Action Potential Example of effects of Antiarrhythmics
Quinidine (a Class I drug) Membrane Potential (mV) Sotalol (a Class III drug) Time (Seconds)
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Actions of Antiarrhythmic Drugs
Class of Drug Action I Na+ Channel Blocker II Β-Adrenoreceptor Blocker III K+ Channel Blocker IV Ca++ Channel Blocker
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What is angina? What causes it?
Antianginal Drugs What is angina? What causes it?
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Angina Problem: Possible Solutions:
Blood flow to myocardium is insufficient Causes: narrowed artery or arterial spasm Possible Solutions: Relax vascular smooth muscle Reduce work of the heart
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Angina Drugs Organic nitrates Calcium Channel Blockers Β-Blockers
Nitroglycerin Nitrate converted to nitric oxide Calcium Channel Blockers Diltiazem, Nifedipine Β-Blockers Propranolol Ca++ Nifedipine cGMP Propranolol Nitrate NO Pi Myosin Light Chain
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Antihypertensive Drugs
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What Determines Arterial Pressure?
Heart Rate Filling Pressure ~ ~ Peripheral Resistance Arterial Pressure Cardiac Output X Contractility Arteriolar Radius
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Antihypertensive Drugs
The Problem: Sustained diastolic pressure can lead to CHF, infarction, end-organ damage Possible Solutions: Mild Htn can be treated with a single drug Severe Htn treated with several drugs, choice of which depends on patient needs
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Some Examples of Antihypertensive Drugs
Beta Blockers Atenolol, Metoprolol More selective than propranolol for β1 receptors Diuretics Hydrochlorothiazide, spironolactone ACE Inhibitors Captopril Calcium Channel Blockers Nifedipine, etc Centrally-Acting Drugs Clonidine Vasodilators Hydralazine
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Hypertensive Crisis BP = 210/150 Drugs that may be used:
Sodium Nitroprusside Dilates arterial and venous smooth muscle Diazoxide vasodilator Labetolol - and β-blocker Drug of choice
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Lipid-Lowering Drugs The Problem: Solutions:
High serum levels of cholesterol- and/or triacylglycerol molecules Solutions: Decrease lipoprotein synthesis Increase lipoprotein catabolism Increase cholesterol removal
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How They Work Niacin: Simvastatin Colestipol Fatty Acid Liver Cell
Inhibits lipolysis in fat cells Simvastatin Inhibits liver enzymes Colestipol Binds to bile salts Enzyme Lipid
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