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Semisynthesis cytotoxicity antiviral activity and drug interaction liability of 7-O-methylated analogues of flavonolignans from milk thistle

机译:乳蓟中黄酮木聚糖7-O-甲基化类似物的半合成细胞毒性抗病毒活性和药物相互作用的影响

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摘要

Silymarin, an extract of the seeds of milk thistle (Silybum marianum), is used as an herbal remedy, particularly for hepatoprotection. The main chemical constituents in silymarin are seven flavonolignans. Recent studies explored the non-selective methylation of one flavonolignan, silybin B, and then tested those analogues for cytotoxicity and inhibition of both cytochrome P450 (CYP) 2C9 activity in human liver microsomes and hepatitis C virus infection in a human hepatoma (Huh7.5.1) cell line. In general, enhanced bioactivity was observed with the analogues. To further probe the biological consequences of methylation of the seven major flavonolignans, a series of 7-O-methylflavonolignans were generated. Optimization of the reaction conditions permitted selective methylation at the phenol in the 7-position in the presence of each metabolite’s 4–5 other phenolic and/or alcoholic positions without the use of protecting groups. These 7-O-methylated analogues, in parallel with the corresponding parent compounds, were evaluated for cytotoxicity against Huh7.5.1 cells; in all cases the monomethylated analogues were more cytotoxic than the parent compounds. Moreover, parent compounds that were relatively non-toxic and inactive or weak inhibitors of hepatitis C virus infection had enhanced cytotoxicity and anti-HCV activity upon 7-O-methylation. Also, the compounds were tested for inhibition of major drug metabolizing enzymes (CYP2C9, CYP3A4/5, UDP-glucuronsyltransferases) in pooled human liver or intestinal microsomes. Methylation of flavonolignans differentially modified inhibitory potency, with compounds demonstrating both increased and decreased potency depending upon the compound tested and the enzyme system investigated. In total, these data indicated that monomethylation modulates the cytotoxic, antiviral, and drug interaction potential of silymarin flavonolignans.
机译:水飞蓟素(水飞蓟(Silybum marianum))的种子的提取物被用作草药,特别是用于保肝。水飞蓟素的主要化学成分是七个黄酮木聚糖。最近的研究探索了一种黄素木脂素,水飞蓟宾B的非选择性甲基化,然后测试了这些类似物对人肝微粒体的细胞毒性和细胞色素P450(CYP)2C9活性的抑制作用以及对人肝癌的丙型肝炎病毒感染的抑制作用(Huh7.5.1 )细胞系。通常,观察到类似物具有增强的生物活性。为了进一步探查七种主要黄酮木聚糖的甲基化的生物学后果,产生了一系列7-O-甲基黄酮木聚糖。通过优化反应条件,可以在每个代谢物的其他4-5个酚和/或醇位置存在的情况下,在7位酚上进行选择性甲基化,而无需使用保护基。评估了这些7-O-甲基化类似物以及相应的母体化合物对Huh7.5.1细胞的细胞毒性。在所有情况下,单甲基化的类似物比母体化合物更具细胞毒性。而且,母体化合物是相对无毒的,无活性的或较弱的丙型肝炎病毒感染抑制剂,在7-O-甲基化后具有增强的细胞毒性和抗HCV活性。另外,还测试了这些化合物对人肝或肠道微粒体中主要药物代谢酶(CYP2C9,CYP3A4 / 5,UDP-葡萄糖醛酸基转移酶)的抑制作用。黄酮木聚糖的甲基化差异修饰了抑制能力,根据测试的化合物和所研究的酶系统,化合物显示出增强的和降低的效能。总的来说,这些数据表明单甲基化调节水飞蓟素黄酮木聚糖的细胞毒性,抗病毒和药物相互作用的潜力。

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