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Diterpene alkaloids from the roots of Aconitum moldavicum and assessment of Nav 12 sodium channel activity of Aconitum alkaloids

机译:霉菌乌头根中的二萜生物碱及乌头生物碱Nav 12钠通道活性的评估

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摘要

A new aconitane alkaloid, 1-O-demethylswatinine (1), was isolated from the root of Aconitum moldavicum together with the known compounds cammaconine (2), columbianine (3), swatinine (4), gigactonine (5), delcosine (6), lycoctonine (7), and ajacine (8). The structures were established by means of HRESIMS, 1D and 2D NMR spectroscopy, including 1H-1H COSY, NOESY, HSQC, and HMBC experiments, resulting in complete 1H-NMR chemical shift assignments for 1-4. The effects of the isolated compounds 4-8, together with eighteen other Aconitum diterpene and norditerpene alkaloids with different skeletal types and substitution patterns, were studied on Nav 1.2 channels by the whole-cell patch clamp technique, using the QPatch-16 automated patch clamp system. Pyroaconitine, ajacine, septentriodine, and delectinine demonstrated significant Nav 1.2 channel inhibition (57-42 %) at 10 μM concentration; several other compounds (acovulparine, acotoxicine, hetisinone, 14-benzoylaconine-8-O-palmitate, aconitine, and lycoctonine) exerted moderate inhibitory activity (30-22 %), while the rest of the tested alkaloids were considered to be inactive. On the basis of these results and by exhaustive comparison of data of previously published computerized QSAR studies on diterpene alkaloids, certain conclusions on the structure-activity relationships of Aconitum alkaloids concerning Nav 1.2 channel inhibitory activity are proposed.
机译:从乌头的根中分离出一种新的乌头碱生物碱1-O-去甲基SWatinine(1)以及已知的化合物cammaconine(2),columbianine(3),swaatinine(4),gigactonine(5),delcosine(6) ),降糖素(7)和阿贾辛(8)。通过HRESIMS,1D和2D NMR光谱学(包括1H-1H COSY,NOESY,HSQC和HMBC实验)建立了结构,得到了1-4的完整1H-NMR化学位移。使用QPatch-16自动膜片钳,通过全细胞膜片钳技术,在Nav 1.2通道上研究了分离的化合物4-8以及其他18种不同骨架类型和取代模式的乌头二萜和去甲萜烯生物碱的作用。系统。在10μM的浓度下,吡咯可尼汀,阿贾辛,司必定碘和洋地黄素对Nav 1.2通道具有明显的抑制作用(57-42%);几种其他化合物(阿古丁,乙草胺,庚烷酮,14-苯甲酰草氨酸-8-O-棕榈酸酯,乌头碱和降糖素)具有中等抑制活性(30-22%),而其余被测生物碱被认为是无活性的。在这些结果的基础上,通过对先前发表的关于二萜生物碱的计算机QSAR研究数据的详尽比较,提出了关于乌头生物碱与Nav 1.2通道抑制活性的结构-活性关系的某些结论。

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