Effect of daily co-exposure to inulin and chlorpyrifos on selected microbiota endpoints in the SHIME® model

益生元 菊粉 生物 肠道菌群 人口 细菌 微生物学 丁酸盐 温度梯度凝胶电泳 食品科学 失调 乳酸菌 生物化学 人口学 社会学 发酵 遗传学 16S核糖体RNA
作者
Claire Joly Condette,Narimane Djekkoun,Julie Reygner,Flore Dépeint,Stéphane Delanaud,Larbi Rhazi,Véronique Bach,Hafida Khorsi‐Cauet
出处
期刊:Environmental Pollution [Elsevier BV]
卷期号:302: 118961-118961 被引量:7
标识
DOI:10.1016/j.envpol.2022.118961
摘要

The intestinal microbiota has a key role in human health via the interaction with the somatic and immune cells in the digestive tract environment. Food, through matrix effect, nutrient and non-nutrient molecules, is a key regulator of microbiota diversity. As a food contaminant, the pesticide chlorpyrifos (CPF) has an effect on the composition of the intestinal microbiota and induces perturbation of microbiota. Prebiotics (and notably inulin) are known for their ability to promote an equilibrium of the microbiota that favours saccharolytic bacteria. The SHIME® dynamic in vitro model of the human intestine was exposed to CPF and inulin concomitantly for 30 days, in order to assess variations in both the bacterial populations and their metabolites. Various analyses of the microbiota (notably temporal temperature gradient gel electrophoresis) revealed a protective effect of the prebiotic through inhibition of the enterobacterial (E. coli) population. Bifidobacteria were only temporarily inhibited at D15 and recovered at D30. Although other potentially beneficial populations (lactobacilli) were not greatly modified, their activity and that of the saccharolytic bacteria in general were highlighted by an increase in levels of short-chain fatty acids and more specifically butyrate. Given the known role of host-microbiota communication, CPF's impact on the body's homeostasis remains to be determined.
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