Gut microbiota limits heavy metals burden caused by chronic oral exposure |
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Authors: | Jé rô me Breton,Catherine Daniel,Joë lle Dewulf,Sté phanie Pothion,Nathalie Froux,Mathieu Sauty,Patrick Thomas,Bruno Pot,Benoî t Foligné |
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Affiliation: | 1. Bactéries Lactiques & Immunité des Muqueuses, Centre d’Infection et d’Immunité de Lille, Institut Pasteur de Lille, Inserm U 1019, CNRS UMR 8204 Université Lille Nord de France, 1 rue du Pr Calmette, BP 245, F-59019 Lille, France;2. Transgenèse et Archivage Animaux Modèles, TAAM, CNRS, UPS44, 3B rue de la Férollerie, F-45071 Orléans, France;3. IPL Santé Environnement Durable Nord, Institut Pasteur de Lille, F-59019 Lille, France |
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Abstract: | Environmental exposure to pollutants such as heavy metal(s) is responsible for various altered physiological functions which are detrimental for health. The gut microbiota is critical for intestinal homeostasis but its role on xenobiotic handling is not fully understood, especially when continuous sub-chronic exposure is addressed. We first confirmed the essential role of the intestinal microbiome to limit heavy metal body burden by using germ-free mice following 6-weeks oral exposure. Significant increases of cadmium and lead absorption and dissemination in blood and target organs were measured in germ-free mice when compared with conventional specific pathogen free (SPF) mice. Besides the “barrier” function of the luminal microbiota, this may involve specific host-genes such as metallothioneins, which are differentially expressed in the gastrointestinal tract of each group of mice. Considering genes relevant for divalent metal transporters and oxidative pathways, significant differences in basal gene expression were measured between control and germ-free mice. Moreover, the magnitude of induction of these genes upon stimulation by heavy metals varied greatly depending on the dose and type of metal as well as the microbial status of the animal. Collectively, these data illustrate the complex host-microbes interplay occurring with environmental pollutants inside the gut. |
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Keywords: | Cadmium Lead Gut microbiota Germ-free mice Bioavailability Gene expression |
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