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吴茱萸次碱类似物的合成及其血管舒张作用,其可能与瞬时受体电位香草酸亚家族成员1(TRPV1)有关。

Synthesis and vasodilator effects of rutaecarpine analogues which might be involved transient receptor potential vanilloid subfamily, member 1 (TRPV1).

作者信息

Chen Zhuo, Hu Gaoyun, Li Dai, Chen Jun, Li Yuanjian, Zhou Huayong, Xie Ye

机构信息

Chemistry Section, Department of Medicinal Chemistry, School of Pharmaceutical Sciences, Central South University, No. 172, Tong Zi Po Road, Changsha 410013, Hunan, China.

出版信息

Bioorg Med Chem. 2009 Mar 15;17(6):2351-9. doi: 10.1016/j.bmc.2009.02.015. Epub 2009 Feb 14.

Abstract

Rutaecarpine is the major alkaloid component of Wu-Chu-Yu, a well known Chinese herbal drug. It has been reported that rutaecarpine causes the vasodilator, hypotensive effects by stimulation of CGRP synthesis and release via activation of TRPV1. In present study, 23 rutaecarpine analogues were designed and synthesized. Then, the vasodilator effects of theses compounds were screened by rat aortic ring experiment. The result showed that the 14-N atom of rutaecarpine might be the key site for the activity. The 5-carbonyl might make lower contribution to the effect. And simple substitute in indole-ring or quinazoline-ring would not enhance the vasodilator effect unless in proper position with proper group. One of these compounds, 10-methylrutaecarpine, exhibited similar effect with rutaecarpine. Further functional experiments showed its vasodilator and hypotensive effect were related to the stimulation of CGRP release via activation of TRPV1. The vasodilator effects of these compounds were evaluated and the structure-activity relationship was elucidated for the first time. The results suggested a new direction of valuable TRPV1 agonist as anti-hypertensive drugs.

摘要

吴茱萸碱是著名的中草药吴茱萸的主要生物碱成分。据报道,吴茱萸碱通过激活瞬时感受器电位香草酸亚型1(TRPV1)刺激降钙素基因相关肽(CGRP)的合成与释放,从而产生血管舒张、降血压作用。在本研究中,设计并合成了23种吴茱萸碱类似物。然后,通过大鼠主动脉环实验筛选这些化合物的血管舒张作用。结果表明,吴茱萸碱的14-N原子可能是活性的关键位点。5-羰基对该效应的贡献可能较小。并且,除非在吲哚环或喹唑啉环的适当位置带有适当基团,否则简单取代不会增强血管舒张作用。这些化合物中的一种,10-甲基吴茱萸碱,表现出与吴茱萸碱相似的作用。进一步的功能实验表明,其血管舒张和降血压作用与通过激活TRPV1刺激CGRP释放有关。首次对这些化合物的血管舒张作用进行了评估并阐明了构效关系。结果为有价值的TRPV1激动剂作为抗高血压药物提供了新方向。

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