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Formation and Conformation of Baicalin–Berberine and Wogonoside–Berberine Complexes

机译:黄芩苷 - 小檗碱和汉黄芩 - 小檗碱配合物的形成和构象

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摘要

It is well-known that baicalin–berberine complex (1) precipitates in the water decoction of numerous Chinese Medicinal formulae containing Radix Scutellariae and Rhizoma Coptidis or Cortex Phellodendri. In the current study, ionic interaction between the carboxylate ion of baicalin and the quaternary ammonium ion of berberine was revealed to be responsible for the formation of 1 and wogonoside–berberine (2) by using FAB-MS and NMR titration experiments. In addition, nuclear Overhauser effect spectroscopy (NOESY) correlations observed in 1 and 2 suggested quite different conformation of the two complexes, which was further supported by the fact that the [α]D of the canadine obtained by reduction of 1 is of an opposite sign to that obtained from 2. Partition coefficients (n-octanol/water) determination demonstrated 12–20 times larger partition coefficient of each complex (1, 2) than that of each single compound (baicalin, wogonoside, and berberine), indicating the significant role of the formation of the complex in the bioavailability enhancement of these pharmacologically active constituents.
机译:众所周知,黄ical素-小ber碱复合物(1)在含有中药黄Rad,黄连或黄柏的中药配方的水煎剂中沉淀。在目前的研究中,通过FAB-MS和NMR滴定实验发现,黄ical苷的羧酸根离子与小ber碱的季铵离子之间的离子相互作用是造成1和wogonoside-小ber碱(2)形成的原因。另外,在1和2中观察到的核Overhauser效应光谱(NOESY)相关性表明这两种配合物的构象完全不同,这进一步得到了事实的支持,即通过还原1得到的卡丹犬的[α] D相反表示从2中获得的符号。正辛醇/水分配系数的测定结果表明,每种复合物(1、2)的分配系数比每种单一化合物(黄,苷,Wogonoside和小ber碱)的分配系数大12至20倍,表明复合物的形成在这些药理活性成分的生物利用度提高中起重要作用。

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