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月牙菌产生者与非产生者:与肠道微生物群代谢白藜芦醇相关的新型人类代谢类型。

Lunularin Producers versus Non-producers: Novel Human Metabotypes Associated with the Metabolism of Resveratrol by the Gut Microbiota.

机构信息

Laboratory of Food & Health, Research Group on Quality, Safety, and Bioactivity of Plant Foods, CEBAS-CSIC, Campus de Espinardo, Murcia 30100, Spain.

Nutrition and Clinical Trials Unit, GENYAL Platform, IMDEA-Food Institute, CEI UAM + CSIC, Madrid 28049, Spain.

出版信息

J Agric Food Chem. 2022 Aug 31;70(34):10521-10531. doi: 10.1021/acs.jafc.2c04518. Epub 2022 Aug 18.

Abstract

We describe here for the first time the consistent observation of two metabotypes associated with resveratrol metabolism by the human gut microbiota, that is, lunularin (LUNU)-producers and LUNU non-producers. In healthy volunteers ( = 195), resveratrol was reduced to dihydroresveratrol, which only in the LUNU-producer metabotype was sequentially dehydroxylated at the 5-position to yield LUNU and the 3-position to produce 4-hydroxydibenzyl. These metabolites (also 3,4'-dihydroxy--stilbene in some LUNU-producers) were detected in the urine and (or) feces of 74% of volunteers after consuming resveratrol, while 26% lacked these dehydroxylase activities. The LUNU non-producer metabotype was more prevalent in females ( < 0.05) but independent of individuals' BMI and age. A 4-styrylphenol reductase in both metabotypes converted stilbenes to their corresponding dibenzyls, while no 4-dehydroxylation in stilbenes or dibenzyls was observed. 4-Hydroxy--stilbene, pinosylvin, dihydropinosylvin, 3-hydroxydibenzyl, and 3-hydroxy--stilbene were not detected in vivo or in vitro. Further research on LUNU metabotypes, their associated gut microbiota, and their impact on health is worthwhile.

摘要

我们首次描述了两种与人类肠道微生物群代谢白藜芦醇相关的代谢类型,即白藜芦醇 3-O-β-D-葡萄糖苷(LUNU)产生菌和非 LUNU 产生菌。在健康志愿者(n=195)中,白藜芦醇被还原为二氢白藜芦醇,只有在 LUNU 产生菌代谢类型中,二氢白藜芦醇才会在 5 位脱氢生成 LUNU,在 3 位脱氢生成 4-羟基二苄基。这些代谢物(在一些 LUNU 产生菌中也是 3,4'-二羟基-二苯乙烯)在志愿者摄入白藜芦醇后,74%的志愿者尿液和(或)粪便中可检测到,而 26%的志愿者缺乏这些脱羟酶活性。LUNU 非产生菌代谢类型在女性中更为常见(<0.05),但与个体的 BMI 和年龄无关。两种代谢类型中都存在 4-苯乙烯基苯酚还原酶,可将二苯乙烯类化合物转化为相应的二苄基化合物,而在二苯乙烯类化合物或二苄基化合物中未观察到 4-去羟化。体内或体外均未检测到 4-羟基-二苯乙烯、松脂素、二氢松脂素、3-羟二苄基和 3-羟基-二苯乙烯。进一步研究 LUNU 代谢类型、相关肠道微生物群及其对健康的影响是值得的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f6b4/9449969/1e4b372a0ab7/jf2c04518_0002.jpg

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