发酵
消化(炼金术)
化学
拉伤
食品科学
体外
生物化学
细菌
新陈代谢
糖基化
微生物学
胃肠道
微生物代谢
肠道菌群
乳酸菌
微生物
乳杆菌科
生物
乳酸
碳水化合物
代谢途径
粪便
益生菌
作者
Zeyu Lu,Shuqi Hao,Huiqi Yan,N. N. Li,JX Hu,Wei Quan,Jiwen Cheng,H. R. Xu,Mei Li
标识
DOI:10.1021/acs.jafc.5c11716
摘要
Advanced glycation end products (AGEs) are consumed in massive amounts with daily diets, among which high molecular weight protein-bound AGEs, such as Myofibrillar protein-bound N ε -(carboxymethyl)lysine (MP-CML), resist gastrointestinal absorption. This study investigated MP-CML metabolism by human gut microbiota using an in vitro colonic fermentation model. MP-CML digest was separately incubated with faecal suspensions from six volunteers (F1–F3, M1–M3). The F3 sample exhibited the highest activity, reducing CML from 146.54 ± 1.45 μg/mL to 68.62 ± 2.06 μg/mL after 72 h, corresponding to a rate of 53.17%. Then, 17 potential CML-metabolizing bacteria were isolated from the fermentation broth of F3 sample. Surprisingly, strain B1, identified as Enterococcus faecalis, degraded CML at 44.1% when using MP-CML digest as the sole nutrient source. This is the first study showing that E. faecalis can metabolize protein-bound CML, which will provide new insights into the targeted regulation of CML in vivo.
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