首页> 外文期刊>Life sciences >Inhibition of cyclic GMP hydrolysis in human corpus cavernosum smooth muscle cells by vardenafil, a novel, selective phosphodiesterase type 5 inhibitor.
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Inhibition of cyclic GMP hydrolysis in human corpus cavernosum smooth muscle cells by vardenafil, a novel, selective phosphodiesterase type 5 inhibitor.

机译:伐地那非是一种新型的选择性磷酸二酯酶5型抑制剂,可抑制人海绵体平滑肌细胞中的环状GMP水解。

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摘要

One of the key mediators of penile erectile function is nitric oxide (NO), which activates soluble guanylyl cyclase within the smooth muscle of erectile tissue and stimulates the production of cGMP. In addition to synthesis by cyclases, intracellular cGMP concentrations are tightly regulated by phosphodiesterases, which hydrolyze and inactivate cyclic nucleotides. In this study, we compared the inhibition of cGMP hydrolysis by vardenafil and sildenafil; two inhibitors selective for phosphodiesterase type 5 (PDE5). Vardenafil is a novel, high affinity PDE5 inhibitor currently under clinical development. In soluble extracts of human corpus cavernosum smooth muscle cells, vardenafil and sildenafil effectively inhibited cGMP hydrolysis at substrate concentrations of 1, 5 and 10 microM cGMP. The IC50 values for vardenafil were approximately 5-fold lower than for sildenafil at the substrate concentrations tested. Dixon plot analyses of the inhibition data demonstrated that vardenafil had a smaller inhibition constant (Ki = 4.5 nM) than sildenafil (Ki = 14.7 nM) in the same cellular extracts. In intact cells, 10 microM of the nitric oxide donor sodium nitroprusside resulted in a minimal (17%) increase in cGMP, relative to basal levels (321 +/- 65 fmol/mg prot). Treatment of cells with 10, 50 or 100 nM vardenafil, in the presence of 10 microM sodium nitroprusside, elevated cGMP levels in a dose dependent fashion, from 63% to 137% of basal levels. Equimolar concentrations of sildenafil also caused dose dependent increases in intracellular cGMP, but to a lesser extent (27-60%). These observations suggest that vardenafil is a more potent PDE5 inhibitor, than sildenafil in vitro. The more pronounced increase of cGMP in the presence of NO in intact cells suggests that vardenafil will be effective at lower doses than sildenafil under clinical conditions.
机译:阴茎勃起功能的关键介质之一是一氧化氮(NO),它可以激活勃起组织平滑肌内的可溶性鸟苷酸环化酶并刺激cGMP的产生。除了通过环化酶合成外,细胞内cGMP的浓度还受磷酸二酯酶的严格调控,磷酸二酯酶可水解并灭活环状核苷酸。在这项研究中,我们比较了伐地那非和西地那非对cGMP水解的抑制作用。对5型磷酸二酯酶(PDE5)有选择性的两种抑制剂。伐地那非是一种新型的,高亲和力的PDE5抑制剂,目前正在临床开发中。在人海绵体平滑肌细胞的可溶性提取物中,伐地那非和西地那非在底物浓度分别为1、5和10 microM cGMP时能有效抑制cGMP水解。在测试的底物浓度下,伐地那非的IC50值比昔地那非低约5倍。对抑制数据的狄克逊图分析表明,在相同的细胞提取物中,伐地那非的抑制常数(Ki = 4.5 nM)比西地那非(Ki = 14.7 nM)小。在完整细胞中,相对于基础水平(321 +/- 65 fmol / mg脯氨酸),一氧化氮供体硝普钠10 microM导致cGMP的增加最小(17%)。在存在10 microM硝普钠的情况下,用10、50或100 nM伐地那非处理细胞,cGMP水平以剂量依赖性方式升高,从基础水平的63%升高到137%。西地那非的等摩尔浓度也引起细胞内cGMP剂量依赖性增加,但程度较小(27-60%)。这些观察结果表明,在体外,伐地那非是一种比西地那非更有效的PDE5抑制剂。完整细胞中不存在NO时cGMP的增加更为明显,这表明在临床条件下,伐地那非比西地那非的剂量要低。

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