Zhang Zhong-Tang, Jian Xi-Xian, Ding Jia-Yu, Deng Hong-Ying, Chao Ruo-Bing, Chen Qiao-Hong, Chen Dong-Lin, Wang Feng-Peng
Nat Prod Commun. 2015 Dec;10(12):2075-84.
The cardiac effect of thirty-eight diterpenoid alkaloids was evaluated on the isolated bullfrog heart model. Among them, twelve compounds exhibited appreciable cardiac activity, with compounds 3 and 35 being more active than the reference drug lanatoside. The structure-cardiac activity relationships of the diterpenoid alkaloids were summarized based on our present and previous studies [2]: i) 1α-OMe or 1α-OH, 8-OH, 14-OH, and NH (or NMe) are key structural features important for the cardiac effect of the aconitine-type C19-diterpenoid alkaloids without any esters. C18-diterpenoid alkaloids, lycoctonine-type C19-diterpenoid alkaloids, and the veatchine- and denudatine-type C20-diterpenoid alkaloids did not show any cardiac activity; ii) the presence of 3α-OH is beneficial to the cardiac activity; iii) the effect on the cardiac action of 6α-OMe, 13-OH, 15α-OH, and 16-demethoxy or a double bond between C-15 and C-16 depends on the substituent pattern on the nitrogen atom.
在离体牛蛙心脏模型上评估了38种二萜生物碱的心脏效应。其中,12种化合物表现出明显的心脏活性,化合物3和35比参比药物毛花苷更具活性。基于我们目前和以前的研究总结了二萜生物碱的结构-心脏活性关系:i)1α-甲氧基或1α-羟基、8-羟基、14-羟基以及氮(或N-甲基)是对无任何酯基的乌头碱型C19 -二萜生物碱的心脏效应重要的关键结构特征。C18 -二萜生物碱、石蒜碱型C19 -二萜生物碱以及维查宁和去甲乌药碱型C20 -二萜生物碱未表现出任何心脏活性;ii)3α-羟基的存在有利于心脏活性;iii)6α-甲氧基、13-羟基、15α-羟基以及16-去甲氧基或C-15与C-16之间双键对心脏作用的影响取决于氮原子上的取代模式。