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无菌大鼠的菜籽粕毒性:整个人类粪便菌群或单一人类大肠杆菌和普通拟杆菌菌株的影响

Rape-seed meal toxicity in gnotobiotic rats: influence of a whole human faecal flora or single human strains of Escherichia coli and Bacteroides vulgatus.

作者信息

Rabot S, Nugon-Baudon L, Raibaud P, Szylit O

机构信息

Unité d'Ecologie et de Physiologie du Système Digestif, Centre de Recherches de Jouy, Jouy-en-Josas, France.

出版信息

Br J Nutr. 1993 Jul;70(1):323-31. doi: 10.1079/bjn19930125.

Abstract

Gnotobiotic growing rats harbouring either a whole human faecal flora or single human strains of Escherichia coli (EM0) or Bacteroides vulgatus (BV8H1) were fed for 7 weeks on semi-synthetic diets in which the protein source was either soya-bean meal (SM) or rape-seed meal (RM). For each bacterial status the RM-diet group was compared with the control group fed on the SM diet. The association of human faecal flora with the RM diet was responsible for reduced feed intake and reduced weight gain, an enlargement of the liver and thyroid and a decrease in both thyroxine and triiodothyronine plasma levels. The association of the B. vulgatus BV8H1 strain with the RM diet reproduced all these effects, except that triiodothyronine plasma levels were not significantly modified. Rats inoculated with the E. coli EM0 strain and fed on the RM diet exhibited a goitre and lowered thyroxine and triiodothyronine plasma levels. These results show that the human intestinal microflora may be involved in glucosinolate metabolism when cruciferous vegetables are consumed by man. The specificity of the symptoms observed according to the rat bacterial status supports the hypothesis that bacteria yield specific toxic glucosinolate derivatives according to their enzymic potential.

摘要

无菌饲养的生长大鼠,其体内要么含有完整的人类粪便菌群,要么含有单一的人类大肠杆菌菌株(EM0)或脆弱拟杆菌菌株(BV8H1),用半合成饲料喂养7周,饲料中的蛋白质来源要么是豆粕(SM),要么是菜籽粕(RM)。对于每种细菌状态,将RM饮食组与以SM饮食喂养的对照组进行比较。人类粪便菌群与RM饮食的关联导致采食量减少、体重增加减少、肝脏和甲状腺肿大以及血浆甲状腺素和三碘甲状腺原氨酸水平降低。脆弱拟杆菌BV8H1菌株与RM饮食的关联重现了所有这些影响,但血浆三碘甲状腺原氨酸水平没有显著改变。接种大肠杆菌EM0菌株并以RM饮食喂养的大鼠出现甲状腺肿,血浆甲状腺素和三碘甲状腺原氨酸水平降低。这些结果表明,当人类食用十字花科蔬菜时,人类肠道微生物群可能参与硫代葡萄糖苷的代谢。根据大鼠细菌状态观察到的症状特异性支持了这样一种假设,即细菌根据其酶潜力产生特定的有毒硫代葡萄糖苷衍生物。

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