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Host-microbiome intestinal interactions during early life: considerations for atopy and asthma development

机译:早期生命期间的宿主微生物组肠道互动:针对土木和哮喘发育的考虑因素

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Purpose of review The body's largest microbial community, the gut microbiome, is in contact with mucosal surfaces populated with epithelial, immune, endocrine and nerve cells, all of which sense and respond to microbial signals. These mutual interactions have led to a functional coevolution between the microbes and human physiology. Examples of coadaptation are anaerobes Bifidobacteria and Bacteroides, which have adjusted their metabolism to dietary components of human milk, and infant immune development, which has evolved to become reliant on the presence of beneficial microbes. Current research suggests that specific composition of the early-life gut microbiome aligns with the maturation of host immunity. Disruptions of natural microbial succession patterns during gut colonization are a consistent feature of immune-mediated diseases, including atopy and asthma. Recent findings Here, we catalog recent birth cohorts documenting associations between immune dysregulation and microbial alterations, and summarize the evidence supporting the role of the gut microbiome as an etiological determinant of immune-mediated allergic diseases. Ecological concepts that describe microbial dynamics in the context of the host environment, and a portray of immune and neuroendocrine signaling induced by host-microbiome interactions, have become indispensable in describing the molecular role of early-life microbiome in atopy and asthma susceptibility.
机译:审查身体最大的微生物群落肠道微生物群落的目的是与含有上皮,免疫,内分泌和神经细胞填充的粘膜表面接触,所有这些感觉和响应微生物信号。这些相互相互作用导致微生物和人生理学之间的功能偶变。辅导的实例是厌氧双歧杆菌和诱导物,其将它们的代谢调节到人乳的膳食成分,以及婴儿免疫发育,这已经进化到依赖于有益微生物的存在。目前的研究表明,早期肠道微生物组的具体组成与宿主免疫的成熟对齐。在肠道殖民化过程中的自然微生物连续模式的破坏是免疫介导的疾病的一致特征,包括特性和哮喘。此处的最近调查结果,我们目录最近的出生队列的文件们在免疫失调和微生物改变之间记录关联,并总结了支持肠道微生物组作用作为免疫介导的过敏性疾病的病因学决定态的证据。在宿主环境的背景下描述微生物动力学的生态概念,以及由宿主微生物组相互作用诱导的免疫和神经内分泌信号传导的描绘,在描述了早期微生物组在特性和哮喘易感性中的分子作用是必不可少的。

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