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Uptake and metabolism of hydroxycinnamic acids (chlorogenic, caffeic, and ferulic acids) by HepG2 cells as a model of the human liver

机译:作为人类肝脏模型的HepG2细胞对羟基肉桂酸(绿原酸,咖啡酸和阿魏酸)的吸收和代谢

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Hydroxycinnamic acids are antioxidant polyphenols common in the human diet, although their potential health benefits depend on their bioavailability. To study the hepatic uptake and metabolism, human hepatoma HepG2 cells were incubated for 2 and 18 h with caffeic, ferulic, and chlorogenic acids. Moderate uptake of caffeic and ferulic acids was observed versus a low absorption of chlorogenic acid, where esterification of the caffeic acid moiety markedly reduced its absorption. Methylation was the preferential pathway for caffeic acid metabolism, along with glucuronidation and sulfation, while ferulic acid generated glucuronides as the only metabolites. Ferulic acid appeared to be more slowly taken up and metabolized by HepG2 cells than caffeic acid, with 73% and 64% of the free, nonmetabolized molecules detected in the culture medium after 18 h, respectively. In conclusion, hydroxycinnamic acids can be metabolized by the liver as suggested by the results obtained using HepG2 cells as a hepatic model system.
机译:羟肉桂酸是人类饮食中常见的抗氧化剂多酚,尽管其潜在的健康益处取决于其生物利用度。为了研究肝的摄取和代谢,将人肝癌HepG2细胞与咖啡酸,阿魏酸和绿原酸孵育2和18 h。观察到咖啡酸和阿魏酸的适度摄取与绿原酸的低吸收相比,其中绿原酸的酯化明显降低了其吸收。甲基化是咖啡酸代谢以及葡萄糖醛酸化和硫酸化的优先途径,而阿魏酸生成葡萄糖醛酸是唯一的代谢产物。与咖啡酸相比,阿魏酸似乎被HepG2细胞吸收和代谢的速度更慢,在18小时后,在培养基中分别检测到73%和64%的游离,未代谢的分子。总之,如使用HepG2细胞作为肝模型系统获得的结果所暗示的,羟基肉桂酸可以被肝脏代谢。

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