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人肠道微生物群对硫酸化胆汁酸的转化作用。

Transformation of sulfated bile acids by human intestinal microflora.

作者信息

Pacini N, Albini E, Ferrari A, Zanchi R, Marca G, Bandiera T

机构信息

Department of Food Science and Microbiology, University of Milan, Italy.

出版信息

Arzneimittelforschung. 1987 Aug;37(8):983-7.

PMID:3675701
Abstract

The in vitro transformation, under anaerobic conditions, of 3- and 7-monosulfated and unsulfated bile acids, was studied in incubates of fecal flora from three healthy subjects. Chenodeoxycholic acid 7 alpha-sulfate and ursodeoxycholic acid 7 beta-sulfate were recovered unchanged, in all cultures, at the end of the incubation time. 3-Sulfated bile acids were metabolized in a different way by the three stool specimens. During the transformation of chenodeoxycholic acid 3-sulfate, desulfation, 7-dehydroxylation and 3-epimerization were observed. In contrast, 3-epimerization was not noticed when ursodeoxycholic acid 3-sulfate and lithocholic acid 3-sulfate were metabolized, the latter being principally transformed into delta 3-cholenic acid, probably by a bacterially mediated trans-elimination of sulfate group. The results obtained seem to prove that the presence of a SO3H group in 7-position usually hinders microbial transformations, which are not affected by a sulfate group in 3-position. Moreover, the 3-sulfated bile acids proved to be less sensitive to the microbial action than the corresponding unsulfated acids, with exception of lithocholic 3-sulfate.

摘要

在厌氧条件下,对来自三名健康受试者的粪便菌群培养物中3-和7-单硫酸化及未硫酸化胆汁酸的体外转化进行了研究。在培养时间结束时,所有培养物中均未发现鹅去氧胆酸7α-硫酸盐和熊去氧胆酸7β-硫酸盐发生变化。三种粪便标本对3-硫酸化胆汁酸的代谢方式不同。在鹅去氧胆酸3-硫酸盐的转化过程中,观察到了脱硫、7-脱羟基化和3-差向异构化。相比之下,在熊去氧胆酸3-硫酸盐和石胆酸3-硫酸盐代谢时未发现3-差向异构化,后者主要通过细菌介导的硫酸根基团反式消除转化为δ3-胆烯酸。所得结果似乎证明,7位存在-SO3H基团通常会阻碍微生物转化,而3位的硫酸根基团则不会影响这种转化。此外,除石胆酸3-硫酸盐外,3-硫酸化胆汁酸对微生物作用的敏感性低于相应的未硫酸化胆汁酸。

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