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Inulin Supplementation Lowered the Metabolic Defects of Prolonged Exposure to Chlorpyrifos from Gestation to Young Adult Stage in Offspring Rats

机译:补充菊粉可降低子代大鼠从妊娠期到成年期长期暴露于毒死rif的代谢缺陷。

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摘要

Increasing evidence indicates that chlorpyrifos (CPF), an organophosphorus insecticide, is involved in metabolic disorders. We assess the hypothesis whether supplementation with prebiotics from gestation to adulthood, through a modulation of microbiota composition and fermentative activity, alleviates CPF induced metabolic disorders of 60 days old offspring. 5 groups of Wistar rats, from gestation until weaning, received two doses of CPF pesticide: 1 mg/kg/day (CPF1) or 3.5 mg/kg/day (CPF3.5) with free access to inulin (10g/L in drinking water). Then male pups received the same treatment as dams. Metabolic profile, leptin sensitivity, insulin receptor (IR) expression in liver, gut microbiota composition and short chain fatty acid composition (SCFAs) in the colon, were analyzed at postnatal day 60 in the offspring (PND 60). CPF3.5 increased offspring’s birth body weight (BW) but decreased BW at PND60. Inulin supplementation restored the BW at PND 60 to control levels. Hyperinsulinemia and decrease in insulin receptor β in liver were seen in CPF1 exposed rats. In contrast, hyperglycemia and decrease in insulin level were found in CPF3.5 rats. Inulin restored the levels of some metabolic parameters in CPF groups to ranges comparable with the controls. The total bacterial population, short chain fatty acid (SCFA) production and butyrate levels were enhanced in CPF groups receiving inulin. Our data indicate that developmental exposure to CPF interferes with metabolism with dose related effects evident at adulthood. By modulating microbiota population and fermentative activity, inulin corrected adult metabolic disorders of rats exposed to CPF during development. Prebiotics supply may be thus considered as a novel nutritional strategy to counteract insulin resistance and diabetes induced by a continuous pesticide exposure.
机译:越来越多的证据表明,毒死rif(CPF)是一种有机磷杀虫剂,与代谢紊乱有关。我们评估了以下假设:通过调节微生物群组成和发酵活性,补充从妊娠到成年的益生元是否可以缓解CPF引起的60天后代的代谢紊乱。从妊娠到断奶的5组Wistar大鼠接受了两剂CPF农药:1 mg / kg /天(CPF1)或3.5 mg / kg /天(CPF3.5),可免费使用菊粉(饮用时为10g / L)水)。然后,雄性幼崽接受与水坝相同的待遇。在后代出生后第60天(PND 60)分析了结肠中的代谢谱,瘦素敏感性,肝脏中的胰岛素受体(IR)表达,结肠中的肠道菌群组成和短链脂肪酸组成(SCFA)。 CPF3.5会增加后代的出生体重(BW),但在PND60时会降低体重。补充菊粉可使体重减轻至PND 60,达到控制水平。在暴露于CPF1的大鼠中观察到高胰岛素血症和肝脏中胰岛素受体β的减少。相反,在CPF3.5大鼠中发现高血糖和胰岛素水平降低。菊粉将CPF组中某些代谢参数的水平恢复到与对照组相当的范围。在接受菊粉的CPF组中,细菌总数,短链脂肪酸(SCFA)产生和丁酸盐水平增加。我们的数据表明,发展性地接触CPF会影响代谢,并在成年期出现明显的剂量相关效应。通过调节微生物群和发酵活性,菊粉纠正了发育过程中暴露于CPF的大鼠的成年代谢紊乱。因此,益生元的供应可以被认为是抵消因持续接触农药引起的胰岛素抵抗和糖尿病的新型营养策略。

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