mk-8153 - Chronic Inhibition of Renal Outer Medullary Potassium : 2024-11-01 mk-8153Jun 2, 2015 — The discovery of a new ROMK inhibitor 22e (MK-8153), with a longer projected human half-life (∼14 h), which should lead to a reduced peak-to-trough ratio, .
mk-8153$40K+
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mk-8153MK-8153: a Potassium channel blockers Drug, Initially developed by Merck & Co., Inc., Now, its global highest R&D status is Preclinical, Mechanism: Potassium channel .May 26, 2021 — We established HEK-293 cell lines that stably express functional canine ether-à-go-go-related gene (cERG) K(+) channels and examined their biophysical and .
mk-8153Jun 2, 2015 — The discovery of a new ROMK inhibitor 22e (MK-8153), with a longer projected human half-life (∼14 h), which should lead to a reduced peak-to-trough ratio, .Discovery of MK-8153, a Potent and Selective ROMK Inhibitor and Novel Diuretic/Natriuretic Jinlong Jiang*, Fa-Xiang Ding, Xiaoyan Zhou, Thomas J. Bateman, Shuzhi Dong, Xin .Our first disclosed clinical ROMK compound, 2 (MK-7145), demonstrated robust diuresis, natriuresis, and blood pressure lowering in preclinical models, with reduced urinary .mk-8153 Chronic Inhibition of Renal Outer Medullary Potassium Dec 5, 2016 — The renal outer medullary potassium (ROMK) channel mediates potassium recycling and facilitates sodium reabsorption through the Na + /K + /2Cl − cotransporter in the loop of Henle and potassium .
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mk-8153