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1,4 - 二氢吡啶衍生物受体结合的构效关系

Structure-activity relationships of receptor binding of 1,4-dihydropyridine derivatives.

作者信息

Takahashi Daiki, Oyunzul Luvsandorj, Onoue Satomi, Ito Yoshihiko, Uchida Shinya, Simsek Rahime, Gunduz Miyase Gozde, Safak Chiat, Yamada Shizuo

出版信息

Biol Pharm Bull. 2008 Mar;31(3):473-9. doi: 10.1248/bpb.31.473.

Abstract

The present study was undertaken to investigate binding activity of synthesized 1,4-dihydropyridine (1,4-DHP) derivatives (Compounds 1--124) to 1,4-DHP calcium channel antagonist receptors in rat brain. Sixteen 1,4-DHP derivatives inhibited specific (+)-[3H]PN 200-110 binding in rat brain in a concentration-dependent manner with IC50 value of 0.43 to 3.49 microM. Scatchard analysis revealed that compounds 54, 69, 85, like nifedipine, caused a significant increase in apparent dissociation constant (Kd) for (+)-[3H]PN 200-110, while compounds 68, 69 and 80 caused a significant decrease in maximal number of bindings sites (Bmax). These data suggest that compounds 68, 69 and 80 exert longer-acting antagonistic effects of 1,4-DHP receptors than compounds 54, 69 and 85. The structure-activity relationship study has revealed that 1) ester groups in 3- and 5-positions are the most effective, 2) the aryl group in the 4-position of 1,4-DHP ring is the basic requirement for optimal activity, 3) position and type of electron-withdrawing groups on phenyl group at position 4 would affect the receptor-binding activity. Furthermore, compound 58 exerted alpha1 receptor binding activity, being 1.6 times greater than 1,4-DHP receptors. Compounds 81, 84, 91, 94, 106, 108 and 109 showed significant binding of ATP-sensitive potassium (K ATP) channel, and the binding activities of compounds 81, 84, 108 and 109 were 1.6--3.8 times greater than the binding activity for 1,4-DHP receptors. Compounds 91 and 106 had similar binding activity for K ATP channel and 1,4-DHP receptors. In conclusion, the present study has shown that novel 1,4-DHP derivatives exert relatively high binding affinity to 1,4-DHP receptors and has revealed new aspect of structure-activity relationships of 1,4-DHP derivatives, especially hexahydroquinoline derivatives.

摘要

本研究旨在探讨合成的1,4 - 二氢吡啶(1,4 - DHP)衍生物(化合物1 - 124)与大鼠脑中1,4 - DHP钙通道拮抗剂受体的结合活性。16种1,4 - DHP衍生物以浓度依赖性方式抑制大鼠脑中特异性(+) - [3H]PN 200 - 110结合,IC50值为0.43至3.49 microM。Scatchard分析显示,化合物54、69、85与硝苯地平一样,使(+) - [3H]PN 200 - 110的表观解离常数(Kd)显著增加,而化合物68、69和80使最大结合位点数量(Bmax)显著减少。这些数据表明,化合物68、69和80对1,4 - DHP受体的拮抗作用比化合物54、69和85持续时间更长。构效关系研究表明:1)3位和5位的酯基最为有效;2)1,4 - DHP环4位的芳基是最佳活性的基本要求;3)4位苯基上吸电子基团的位置和类型会影响受体结合活性。此外,化合物58具有α1受体结合活性,比1,4 - DHP受体高1.6倍。化合物81、84、91、94、106、108和109显示出对ATP敏感性钾(KATP)通道的显著结合,化合物81、84、108和109的结合活性比1,4 - DHP受体的结合活性高1.6 - 3.8倍。化合物91和106对KATP通道和1,4 - DHP受体具有相似的结合活性。总之,本研究表明新型1,4 - DHP衍生物对1,4 - DHP受体具有相对较高的结合亲和力,并揭示了1,4 - DHP衍生物,尤其是六氢喹啉衍生物构效关系的新方面。

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