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设计、合成及部分新型 2-苯基-3,6-哒嗪二酮衍生物作为 PDE-5 抑制剂的生物评价。

Design, synthesis, and biological evaluation of some new 2-phenyl-3,6-pyridazinedione derivatives as PDE-5 inhibitors.

机构信息

Pharmaceutical Chemistry Department, Faculty of Pharmacy, Modern University for Technology and Information MTI, Cairo 11571, Egypt.

Pharmaceutical Chemistry Department, Faculty of Pharmacy, Cairo University, Cairo, 11562, Egypt.

出版信息

Bioorg Chem. 2024 Apr;145:107213. doi: 10.1016/j.bioorg.2024.107213. Epub 2024 Feb 16.

Abstract

Various 2-phenyl-3,6-pyridazinedione derivatives 4a-j, 5a-c, 6a,b, 7a-c, 8, 9, 10a-d, and 11a-d, were effectivelysynthesized, and tested for their potential inhibition of phosphodiesterase enzyme at 10 µM. Then fourteen compounds exhibiting the highest inhibition 4b, 4d, 4e, 4g, 4h, 4i, 5a, 6a,b, 7c, 10a,b, 11a, and 11d were selected for screening their PDE-5 inhibition, where compounds 4b,g,h, and 11a revealed promising PDE-5 inhibition having IC values = 25, 53, 22, and 42 nM, respectively in comparison with Sildenafil (IC = 16 nM). Additionally, these four most active compounds were safe to normal fibroblast cell line WI-38. Moreover, 4f, 4h, 4j, 10d, and 11d had almost the same anti-proliferative effect against the aortic cell line as Sildenafil. Furthermore, molecular docking illustrated that the binding of the target compounds with the key amino acids in the binding site of PDE-5 (PDB 2H42) was like to that of the cocrystallized ligand Sildenafil. Additionally, molecular dynamics simulation for the most active compound 4h revealed high stability of the 4h -PDE5 complex explaining its promising activity as a PDE-5 inhibitor. Therefore, the 2-phenyl-3,6-pyridazinedione scaffold can be considered an important core for designing more promising PDE-5 inhibitors.

摘要

各种 2-苯基-3,6-哒嗪二酮衍生物 4a-j、5a-c、6a,b、7a-c、8、9、10a-d 和 11a-d 被有效地合成,并在 10µM 下测试其对磷酸二酯酶的潜在抑制作用。然后,选择了 14 种表现出最高抑制活性的化合物 4b、4d、4e、4g、4h、4i、5a、6a,b、7c、10a,b、11a 和 11d 进行 PDE-5 抑制筛选,其中化合物 4b、4g、4h 和 11a 分别具有 IC 值 = 25、53、22 和 42 nM,显示出有前景的 PDE-5 抑制作用,与西地那非(IC = 16 nM)相比。此外,这四种最活跃的化合物对正常成纤维细胞系 WI-38 是安全的。此外,4f、4h、4j、10d 和 11d 对主动脉细胞系的抗增殖作用几乎与西地那非相同。此外,分子对接表明,目标化合物与 PDE-5 结合位点中关键氨基酸的结合(PDB 2H42)类似于与共晶配体西地那非的结合。此外,对最活跃的化合物 4h 进行分子动力学模拟表明,4h-PDE5 复合物具有很高的稳定性,解释了其作为 PDE-5 抑制剂的良好活性。因此,2-苯基-3,6-哒嗪二酮支架可以被认为是设计更有前途的 PDE-5 抑制剂的重要核心。

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