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Early-life food nutrition, microbiota maturation and immune development shape life-long health

机译:早期食品营养,微生物群成熟和免疫发育造型寿命长

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The current knowledge about early-life nutrition and environmental factors that affect the interaction between the symbiotic microbiota and the host immune system has demonstrated novel regulatory target for treating allergic diseases, autoimmune disorders and metabolic syndrome. Various kinds of food nutrients (such as dietary fiber, starch, polyphenols and proteins) can provide energy resources for both intestinal microbiota and the host. The indigestible food components are fermented by the indigenous gut microbiota to produce diverse metabolites, including short-chain fatty acids, bile acids and trimethylamine-N-oxide, which can regulate the host metabolized physiology, immunity homeostasis and health state. Therefore it is commonly believed early-life perturbation of the microbial community structure and the dietary nutrition interference on the child mucosal immunity contribute to the whole life susceptibility to chronic diseases. In all, the combined interrelationship between food ingredients nutrition, intestinal microbiota configurations and host system immunity provides new therapeutic targets to treat various kinds of pathogenic inflammations and chronic diseases.
机译:目前关于影响共生微生物和宿主免疫系统之间相互作用的早期营养和环境因素的知识表明了治疗过敏性疾病,自身免疫性疾病和代谢综合征的新型调节靶标。各种食物营养素(如膳食纤维,淀粉,多酚和蛋白质)可以为肠道微生物群和宿主提供能量资源。难以消化的食物组分由本土肠道微生物生成多种代谢物,包括短链脂肪酸,胆汁酸和三甲胺-N-氧化物,其可以调节宿主代谢生理,免疫稳态和健康状态。因此,通常认为微生物群落结构的早期扰动和对儿童粘膜免疫的膳食营养干扰有助于对慢性疾病的一生易感性。总之,食品成分营养,肠道微生物群配置和宿主系统免疫之间的组合相互关系提供了治疗各种致病性炎症和慢性疾病的新治疗靶标。

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