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Pharmacodynamic characteristics and cardioprotective effects of new NHE1 inhibitors.

机译:新的NHE1抑制剂的药效特性和心脏保护作用。

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Inhibitors of Na(+)/H(+) exchanger (NHE) 1 have been shown to exert protective effects on various myocardial injuries. In this study, we characterized the pharmacodynamic properties of new guanidine NHE1 inhibitors (cariporide, sabiporide, KR-32511, KR-32570, and KR-33028) to analyze their myocardial protective effects. Although NHE1 is the major NHE isoform in cardiomyocytes, IC(50)values of these chemicals tested in rat cardiomyocytes were significantly different from those in PS120/hNHE1 cells where human NHE1 is heterologously expressed. In rat cardiomyocytes, KR-32570 and KR-33028 exhibited the highest potencies and their IC(50)values were 7+/-2 nM and 9+/-3 nM, respectively. The IC(50)values of all the chemicals tested on rat submandibular gland NHE2 were in the micromolar range, and they showed no inhibitory effects on hNHE3 and epithelial Na(+) channels up to 30 microM, suggesting a high selectivity toward NHE1. Sabiporide and KR-32570 exhibited slow dissociation kinetics with NHE1 inhibition persisting even after rinsing-out. When the cytoprotective effects of chemicals against hypoxic damage of rat cardiomyocytes were examined, the order of potency was KR-32570>or=KR-33028>sabiporide>cariporide>KR-32511. This order was exactly the same as that for the NHE1 inhibition in rat cardiomyocytes and did not correlate with any other properties, including the slow dissociation kinetics. Taken together, these results suggest that KR-32570 and KR-33028 are potent candidates for cardioprotective agents, and that the IC(50) in the target organ is the most critical factor governing the cytoprotective effects of NHE1 inhibitors.
机译:Na(+)/ H(+)交换剂(NHE)1的抑制剂已显示出对各种心肌损伤的保护作用。在这项研究中,我们表征了新的胍NHE1抑制剂(卡立哌利,沙比哌利特,KR-32511,KR-32570和KR-33028)的药效学性质,以分析其心肌保护作用。尽管NHE1是心肌细胞中主要的NHE同工型,但在大鼠心肌细胞中测试的这些化学物质的IC(50)值与异源表达人NHE1的PS120 / hNHE1细胞中的IC(50)值明显不同。在大鼠心肌细胞中,KR-32570和KR-33028表现出最高的效力,它们的IC(50)值分别为7 +/- 2 nM和9 +/- 3 nM。在大鼠下颌下腺NHE2上测试的所有化学药品的IC(50)值均在微摩尔范围内,并且它们对hNHE3和高达30 microM的上皮Na(+)通道均无抑制作用,表明对NHE1的选择性高。 Sabiporide和KR-32570表现出缓慢的解离动力学,即使冲洗后仍具有NHE1抑制作用。当检查化学药品对大鼠心肌细胞的低氧损伤的细胞保护作用时,效力的顺序为KR-32570>或= KR-33028>沙比阿利特>卡立泊来德> KR-32511。此顺序与大鼠心肌细胞中NHE1抑制的顺序完全相同,并且与其他任何特性(包括缓慢的解离动力学)均不相关。综上所述,这些结果表明KR-32570和KR-33028是心脏保护剂的有效候选者,而靶器官中的IC(50)是控制NHE1抑制剂的细胞保护作用的最关键因素。

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