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Studies on structural elucidation of Aconitum diterpenoid alkaloid by LC-APCI-MS and effects of Aconitum diterpenoid alkaloid on cutaneous blood flow

机译:LC-APCI-MS阐明乌头二萜生物碱的结构研究及乌头二萜生物碱对皮肤血流的影响

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The chemical constituents of Aconitum yesoense var. macroyesoense and Aconitum japonicum were examined using high-resolution spectral analysis. Twelve novel alkaloids were isolated from A. yesoense var. macroyesoense together with 20 known alkaloids. Eight novel alkaloids were isolated from A. japonicum together with 15 known alkaloids. An HPLC-atmospheric pressure chemical ionization-mass spectrometry (HPLC-APCI-MS) method was useful for the simultaneous determination of 21 Aconitum alkaloids found in A. yesoense var. macroyesoense and A. japonicum. These compounds were fairly stable under the conditions used, and the protonated molecules or fragment ions characteristic of the molecule appeared as base peaks in the mass spectra and were used for selected ion monitoring. HPLC-APCI-MS is a very promising approach for structural investigations of positional isomers and stereoisomers. This method was applied successfully to stereoisomeric Aconitum alkaloids differing in configuration at C-1, -6, or -12. Comparison of the APCI spectra showed that the abundance of fragment ions was significantly higher for the C-1, -6, or -12 beta-form alkaloid than for C-1, -6, or -12 alpha-form alkaloid. The main alkaloid constituents in the root of A. yesoense var. macroyesoense, Aconitum alkaloids of the C20-diterpenoid type, kobusine and pseudokobusine, and their acyl derivatives were examined for their peripheral vasoactivities by measuring laser-flowmetrically the cutaneous blood flow in the hind foot of mice after intravenous administration. It is thought that the hydroxyl groups of alkaloids, especially a free OH group of pseudokobusine at C-6, were important for action on the peripheral vasculature leading to dilatation, and the results indicated that esterification of the hydroxyl group at C-15 with either anisoate, veratroate, or p-nitroben-zoate may contribute to enhancement of the activity of the parent alkaloids.
机译:乌头乌头的化学成分使用高分辨率光谱分析法检查了巨眼草和日本乌头。从叶黄曲霉中分离出十二种新型生物碱。 macroyesoense和20种已知生物碱。从日本草中分离出八种新生物碱以及15种已知生物碱。高效液相色谱-常压化学电离质谱法(HPLC-APCI-MS)可用于同时测定A. yesoense var。中的21种乌头生物碱。 macroyesoense和A.japonicum。这些化合物在所用条件下相当稳定,质子化的分子或分子的碎片离子特征在质谱图中显示为基本峰,并用于选定的离子监测。 HPLC-APCI-MS是用于位置异构体和立体异构体结构研究的非常有前途的方法。该方法已成功应用于C-1,-6或-12构型不同的立体异构乌头生物碱。 APCI光谱的比较显示,C-1,-6或-12β型生物碱的碎片离子丰度明显高于C-1,-6或-12α型生物碱。 A. yesoense var根中的主要生物碱成分。通过静脉内注射激光测量小鼠后足的皮肤血流,检查了巨眼,C20-二萜类乌头类生物碱,kobusine和pseudokobusine及其酰基衍生物的外周血管活性。认为生物碱的羟基,特别是在C-6处的假kobusine的游离OH基,对作用于外周血管导致扩张的作用很重要,结果表明C-15处的羟基被任一酯化茴香酸酯,藜芦酸酯或对硝基苯甲酸酯可能有助于增强母体生物碱的活性。

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