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PubMed · 13958368

[Diuretics].

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E KATO. 1963. [Diuretics].. https://pubmed.ncbi.nlm.nih.gov/13958368/

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The molecular basis of inherited salt-losing tubular disorders with secondary hypokalemia has become much clearer in the past two decades. Two distinct segments along the nephron turned out to be affected, the thick ascending limb of Henle's loop and the distal convoluted tubule, accounting for two major clinical phenotypes, hyperprostaglandin E syndrome and Bartter-Gitelman syndrome. To date, inactivating mutations have been detected in six different genes encoding for proteins involved in renal transepithelial salt transport. Careful examination of genetically defined patients ("human knockouts") allowed us to determine the individual role of a specific protein and its contribution to the overall process of renal salt reabsorption. The recent generation of several genetically engineered mouse models that are deficient in orthologous genes further enabled us to compare the human phenotype with the animal models, revealing some unexpected interspecies differences. As the first line treatment in hyperprostaglandin E syndrome includes cyclooxygenase inhibitors, we propose some hypotheses about the mysterious role of PGE(2) in the etiology of renal salt-losing disorders.

Diuretics↗

[Diuretics; their characteristics and future development].

We review the diuretics regarding the mechanism of action, way of clinical use and their adverse effects. Recent progress of molecular biology revealed the molecular target of diuretics and thereby, the molecular mechanism of diuretic action became clear to understand. Loop diuretics and thiazides are the most widely used diuretics and the physiologic adaptation to their prolonged use are mentioned. Carbonic anhydrase inhibitors are not used as diuretics but for correction of metabolic alkalosis and treatment of glaucoma. Potassium-sparing diuretics have modest natriuresis but the combination with loop diuretics or thiazides results in strong natriuresis. Adenosine type 1 receptor antagonist has been developed for treatment of edema in chronic heart failure. Vasopressin type 2 receptor antagonists are developed for a new type of diuretics to increase the free water clearance in cases of chronic heart failure and SIADH. The recombinant atrial natriuretic polypeptide is recently used as diuretics in acute heart failure. Knowledge of pharmacological action of diuretics could help the appropriately clinical use of diuretics, in particular the diuretics-resistant edema.

Diuretics↗