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Bioavailability of Ginsenosides from White and Red Ginsengs in the Simulated Digestion Model

机译:模拟消化模型中白参和红参中人参皂甙的生物利用度

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This study aims to investigate the bioavailability of ginsenosides during simulated digestion of white (WG) and red (RG) ginseng powders. Stability, bioaccessibility, and permeability of ginsenosides'present in.WG and RG were studied in a . Caco-2 cell culture model coupled with oral, gastric, and small intestinal simulated digestion. Most ginsenosides in WG and RG were stable (>90%) during the simulated digestion. Bioaccessibilities of total ginsenosides during in vitro digestion of WG and RG were similar at approximately 85%. However, the bioaccessibility of protopanaxatriol type ginsenosides in the early food phase was greater than that of the protopanaxadiol type. The less polar RG ginsenosides were released later following the ' jejunum phase. Ginsenosides had low permeability (<1 × 10~(-6) cm/s) through Caco-2 cell monolayers. These findings suggest that the WG and RG ginsenoside compositions affect bioaccessibility during digestion and that ginsenosides are poorly absorbed in humans.
机译:这项研究旨在研究人参皂甙在白色(WG)和红色(RG)人参粉的模拟消化过程中的生物利用度。在WG中研究了人参皂苷在WG和RG中的稳定性,生物可及性和渗透性。 Caco-2细胞培养模型与口腔,胃和小肠模拟消化相结合。在模拟消化过程中,WG和RG中的大多数人参皂苷是稳定的(> 90%)。在WG和RG的体外消化过程中,总人参皂甙的生物利用度相似,约为85%。但是,食物早期的人参皂苷原是人参皂苷,比人参二醇型人参皂苷具有更高的生物利用度。在空肠阶段之后,释放极性较低的RG人参皂甙。人参皂苷通过Caco-2细胞单层渗透率低(<1×10〜(-6)cm / s)。这些发现表明,WG和RG人参皂甙成分会影响消化过程中的生物利用度,人参皂甙在人体中的吸收较差。

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