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Perfusion and Renal Elimination (77/76) -- Fundamentals of Nursing Pharmacology - 1...

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Perfusion and Renal Elimination

Perfusion and Renal Elimination 6.7 Cardiac Glycosides Cardiac Glycosides Digoxin Digoxin is a cardiac glycoside medication that has been used for centuries to treat heart failure. Currently it is the only positive inotropic drug we see in practice. It has three effects on heart muscle: positive inotropic action (increases contractility, stroke volume and, thus, cardiac output), negative chronotropic action (decreases heart rate), and negative dromotropic action (decrease conduction of cardiac cells). The inotropic effect of digoxin supports improving the heart’s ability to pump with more strength, but it is important to understand that being on digoxin too long can actually cause more heart failure. Imagine that you have an elastic hairband; eventually, as you stretch it repeatedly over time, it either loses its elasticity or it breaks. The heart can only take so much force of contraction for so long before the stretch becomes exacerbated. Digoxin, although ground breaking for heart failure, should really be saved for use closer to end stage heart failure to support the heart in the final stages.[1] Mechanism of Action Digoxin works by inhibiting the sodium and potassium pump, which results in an increase in intracellular sodium and an influx of calcium into cardiac cells, causing the cardiac muscle fibers to contract more efficiently and increase cardiac output.[2] Indications for Use This medication is used as second-line treatment for clients who have heart failure or atrial fibrillation. Due to the risk for digoxin toxicity, the clinical use of digoxin has decreased and alternative, safer medications are being used. Also, remember that digoxin has an impact on the contractility of a heart, so this must be considered by the prescribing professionals. Nursing Considerations Across the Lifespan Apical pulse should be taken for a full minute before administration of this medication. If the apical pulse is less than 60, the dose should be withheld and the prescribing provider notified. Serum digoxin levels should be monitored, with a normal therapeutic range from 0.8 to 2 ng/mL. Serum potassium levels should also be closely monitored for clients on digoxin because hypokalemia increases the effect of digoxin and can result in digoxin toxicity. Normal potassium level is 3.5 to 5.0 mEq/L, and a result less than 3.5 should be immediately reported to the provider. Nurses should closely monitor signs of digoxin toxicity. Geriatric clients have an increased risk for developing digoxin toxicity. Digibind is used to treat digoxin toxicity. Adverse/Side Effects Overdose or accumulation of digoxin causes digoxin toxicity. Signs and symptoms of digoxin toxicity are bradycardia (heart rate less than 60), nausea, vomiting, visual changes (halos), and arrhythmias. Cardiotoxicity is a serious adverse effect with ventricular dysrhythmias. Toxicity of this medication typically occurs at greater than 2 ng/mL, but some clients may have signs and symptoms at lower le
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