首页> 外文期刊>European Journal of Pharmacology: An International Journal >Pharmacological characterization of a novel phosphodiesterase type 5 (PDE5) inhibitor lodenafil carbonate on human and rabbit corpus cavernosum.
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Pharmacological characterization of a novel phosphodiesterase type 5 (PDE5) inhibitor lodenafil carbonate on human and rabbit corpus cavernosum.

机译:新型磷酸二酯酶5型(PDE5)抑制剂洛地那非碳酸酯对人和兔海绵体的药理学表征。

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摘要

Nitrergic nerves and endothelial cells release nitric oxide (NO) in the corpus cavernosum, a key mediator that stimulates soluble guanylyl cyclase to increase cGMP levels causing penile erection. Phosphodiesterase 5 (PDE5) inhibitors, such as sildenafil, prolong the NO effects by inhibiting cGMP breakdown. Here, we report a novel PDE5 inhibitor, lodenafil carbonate, (Bis-(2-{4-[4-ethoxy-3-(1-methyl-7-oxo-3-propyl-6,7-dihydro-1H-pyrazolo[4,3-d]pyr imidin-5-yl)-benzenesulfonyl]piperazin-1-yl}-ethyl)carbonate) that is a dimer of lodenafil. We therefore aimed to compare the effects of sildenafil, lodenafil and lodenafil carbonate on in vitro human and rabbit cavernosal relaxations, activity of crude PDE extracts from human platelets, as well as stability and metabolic studies in rat, dog and human plasma. Pharmacokinetic evaluations after intravenous and oral administration were performed in male beagles. Functional experiments were conducted using organ bath techniques. Pharmacokinetics was studied in beagles by liquid chromatography coupled to tandem mass spectrometry (LC-MS/MS), following oral or intravascular administration. All PDE5 inhibitors tested concentration-dependently relaxed (0.001-100 microM) phenylephrine-precontracted rabbit and human corpus cavernosum. The cavernosal relaxations evoked by either acetylcholine (0.01-100 microM) or electrical field stimulation (EFS, 1-20 Hz) were markedly potentiated by sildenafil, lodenafil and lodenafil carbonate. Lodenafil carbonate was more potent to inhibit the cGMP hydrolysis in PDE extracts compared with lodenafil and sildenafil. Following intravascular and single oral administration of lodenafil carbonate, only lodenafil and norlodenafil were detected in vivo. These results indicate that lodenafil carbonate works as a prodrug, being lodenafil the active moiety of lodenafil carbonate.
机译:硝能神经和内皮细胞会在海绵体中释放一氧化氮(NO),而海绵体是刺激可溶性鸟苷酸环化酶增加cGMP水平从而引起阴茎勃起的关键介体。磷酸二酯酶5(PDE5)抑制剂(如西地那非)可通过抑制cGMP分解来延长NO的作用。在这里,我们报告了一种新型的PDE5抑制剂,洛地那非碳酸酯((双-(2- {4- [4-乙氧基-3-(1-甲基-7-氧代-3-丙基-6,7-二氢-1H-吡唑并[4,3-d] pyr亚胺丁-5-基)-苯磺酰基]哌嗪-1-基}-乙基)碳酸酯)是洛地那非的二聚体。因此,我们旨在比较西地那非,洛地那非和洛地那非碳酸酯对体外人和兔海绵体松弛,人血小板中粗制PDE提取物的活性以及在大鼠,狗和人血浆中的稳定性和代谢研究的影响。在雄性比格犬中进行静脉和口服给药后的药代动力学评估。使用器官浴技术进行功能性实验。在口服或血管内给药后,通过液相色谱与串联质谱联用(LC-MS / MS)在比格犬中研究了药代动力学。所有PDE5抑制剂均测试了浓度依赖性轻松(0.001-100 microM)去氧肾上腺素预收缩的兔和人海绵体。西地那非,洛地那非和洛地那非碳酸酯可明显增强乙酰胆碱(0.01-100 microM)或电场刺激(EFS,1-20 Hz)引起的海绵体松弛。与洛地那非和西地那非相比,碳酸洛地那非对抑制PDE提取物中cGMP水解的作用更强。在血管内和单次口服洛地那非碳酸酯后,体内仅检测到了洛地那非和去甲地那非。这些结果表明,洛地那非碳酸酯是前药,是洛地那非碳酸洛地那非的活性部分。

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