Nanotechnology Research Center, Biotechnology Research Center, School of Pharmacy, Mashhad University of Medical Sciences, Mashhad 91775, Iran.
Arch Pharm Res. 2011 Sep;34(9):1417-26. doi: 10.1007/s12272-011-0902-9. Epub 2011 Oct 6.
New analogues of nifedipine, in which the ortho-nitro phenyl group at position 4 has been replaced by 4(5)-chloro-5(4)-imidazolyl substituent and which are able to interact with the receptor by hydrogen binding were designed, synthesized, and evaluated as calcium channel antagonists. The designed dihydropyridines were synthesized using the Hantzsch condensation and evaluated as calcium channel antagonists using the high K+ contraction of guineapig ileal longitudinal smooth muscle. A docking study was performed using the AutoDock4 program, and QSAR equations were obtained using multilinear regression. Our computational studies indicated that the oxygen of the ester (O10) and the N3' of the imidazole ring form a hydrogen bonding interaction with the NH of HIS 363 and NH of LYS354, respectively, and that the sum of the BEHp5 and RDF075p are the most significant descriptors. The results of calcium channel antagonist evaluation demonstrated that increasing the chain length in C3 and C5 ester substituents increased activity. The most potent compound was the bis-phenylpropyl ester (5l) derivative, in that it was more active than the reference drug nifedipine and that the bis-phenylethyl ester (5k) derivative had comparable activity with nifedipine. The present research revealed that the 4(5)-chloro-5(4)-imidazolyl moiety is a bioisoster of o-nitrophenyl in nifedipine and provided novel dihydropyridines with more activity as calcium channel antagonists.
设计、合成并评价了硝苯地平的新类似物,其中 4 位的邻硝基苯基被 4(5)-氯-5(4)-咪唑基取代基取代,并且能够通过氢键与受体相互作用。使用 Hantzsch 缩合合成了设计的二氢吡啶,并使用豚鼠回肠纵向平滑肌的高 K+收缩评价其作为钙通道拮抗剂的活性。使用 AutoDock4 程序进行对接研究,并使用多元线性回归获得 QSAR 方程。我们的计算研究表明,酯的氧(O10)和咪唑环的 N3'分别与 HIS 363 的 NH 和 LYS354 的 NH 形成氢键相互作用,并且 BEHp5 和 RDF075p 的总和是最重要的描述符。钙通道拮抗剂评价的结果表明,C3 和 C5 酯取代基中链长的增加增加了活性。最有效的化合物是双苯丙基酯(5l)衍生物,其活性强于参比药物硝苯地平,而双苯乙基酯(5k)衍生物的活性与硝苯地平相当。本研究表明,4(5)-氯-5(4)-咪唑基部分是硝苯地平中邻硝基苯基的生物等排体,并提供了具有更高钙通道拮抗剂活性的新型二氢吡啶。