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Potassium-sparing diuretics or antikaliuretics [1] refer to drugs that cause diuresis without causing potassium loss in the urine. [2] They are typically used as an adjunct in management of hypertension , cirrhosis , and congestive heart failure . [ 3 ]
For potassium-sparing diuretics, its common side effects include hyponatremia, hyperkalemia, metabolic acidosis and sexual dysfunction specifically for spironolactone. [4] [5] The use of diuretics should be avoided in patients with severe dehydration, anuria (absence of urine production). [4]
The thiazides and potassium-sparing diuretics are considered to be calcium-sparing diuretics. [6] The thiazides cause a net decrease in calcium lost in urine. [7] The potassium-sparing diuretics cause a net increase in calcium lost in urine, but the increase is much smaller than the increase associated with other diuretic classes. [7]
There are a few different types of diuretics, including thiazide diuretics, loop diuretics, potassium-sparing diuretics, and others, he adds. Doctors will determine which type is best for you ...
Side effects of spironolactone which may be indicative of hyperkalemia and if persistent could justify serum potassium testing include nausea, fatigue, and particularly muscle weakness. [64] Notably, non-use of routine potassium monitoring with spironolactone in young women would reduce costs associated with its use.
[2] [3] Other serious side effects may include high blood potassium. [2] [3] Use in pregnancy and breastfeeding is not generally recommended. [2] [3] Use in those with significant kidney problems is not recommended. [2] [3] It decreases blood pressure mainly by hydrochlorothiazide while triamterene decreases the amount of potassium lost. [2] [3]
The potassium-sparing effects of amiloride offset the low blood potassium (hypokalemia) that is often induced by thiazides or loop diuretics, which is of particular importance in people for whom maintaining a normal level of potassium is critically important. [6]
Triamterene directly blocks the epithelial sodium channel [4] (ENaC) on the lumen side of the kidney collecting tubule. [5]: 127 Other diuretics cause a decrease in the sodium concentration of the forming urine due to the entry of sodium into the cell via the ENaC, and the concomitant exit of potassium from the principal cell into the forming urine.
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