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Effects of anthocyanins on the AhR-CYP1A1 signaling pathway in human hepatocytes and human cancer cell lines

机译:花色苷对人肝细胞和癌细胞系AhR-CYP1A1信号通路的影响

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摘要

Anthocyanins are plant pigments occurring in flowers and berry fruits. Since a phenomenon of food-drug interactions is increasingly emerging, we examined the effects of 21 major anthocyanins and the extracts from 3 food supplements containing anthocyanins on the aryl hydrocarbon receptor (AhR) – cytochrome P450 CYP1A1 signaling pathway in human hepatocytes and human hepatic HepG2 and intestinal LS174T cancer cells. Pelargonidin-3-O-rutinoside (PEL-2) and cyanidin-3,5-O-diglucoside (CYA-3) dose-dependently activated AhR, as revealed by gene reporter assay. PEL-2 and CYA-3 induced CYP1A1 mRNA but not protein in HepG2 and LS174T cells. Neither compound induced CYP1A1 mRNA and protein in four different primary human hepatocytes cultures. The effects of PEL-2 and CYA-3 on AhR occurred by ligand-dependent and ligand-independent mechanisms, respectively, as demonstrated by ligand binding assay. In a direct enzyme inhibition assay, none of the antocyanins tested inhibited the CYP1A1 marker activity to less than 50% even at 100 µM concentration. PEL-2 and CYA-3 at 100 µM inhibited CYP1A1 to 79% and 65%, respectively. In conclusion, with exception of PEL-2 and CYA-3, there were no effects of 19 major anthocyanins and 3 food supplements containing anthocyanins on AhR-CYP1A1 signaling, implying zero potential of these compounds for food-drug interactions with respect to AhR-CYP1A1 pathway.
机译:花青素是存在于花朵和浆果中的植物色素。由于食物-药物相互作用的现象越来越多,我们研究了21种主要花色苷以及3种含花色苷的食品补充物中的提取物对人肝细胞和人肝HepG2的芳烃受体(AhR)–细胞色素P450 CYP1A1信号通路的影响。和肠道LS174T癌细胞。如基因报告基因检测所揭示的那样,Pelargonidin-3-O-芸香糖苷(PEL-2)和cyanidin-3,5-O-diglucoside(CYA-3)剂量依赖性地激活了AhR。 PEL-2和CYA-3诱导HepG2和LS174T细胞中的CYP1A1 mRNA而非蛋白。在四种不同的人类原代肝细胞培养物中,这两种化合物均未诱导CYP1A1 mRNA和蛋白。 PEL-2和CYA-3对AhR的作用分别通过配体依赖性和配体依赖性机制发生,如配体结合测定所证明的。在直接酶抑制试验中,即使在浓度为100 µM的情况下,所测试的花色素苷都不能将CYP1A1标记的活性抑制至50%以下。 100 µM的PEL-2和CYA-3分别抑制CYP1A1至79%和65%。总之,除PEL-2和CYA-3外,没有19种主要花色苷和3种含花色苷的食品补充剂对AhR-CYP1A1信号传导有影响,这意味着这些化合物对于食品药物相互作用的相对于AhR-0的潜力为零。 CYP1A1途径。

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