aLaboratory of Microbiology bHost-Microbe Interactomics Group, Wageningen University, Wageningen, The Netherlands.
Curr Opin Gastroenterol. 2013 Nov;29(6):621-7. doi: 10.1097/MOG.0b013e328365d365.
The dynamic interplay of the intestinal microbiota and host has been the focus of many studies because of its impact on the health status in human life. Recent reports on the time-resolved immune and metabolic interactions between the host and microbiota, as well as the molecular signatures that mark this communication during the process of establishing a host-microbial relationship, are addressed here.
During microbial colonization, the progressive impact of de-novo introduction of the gut microbiota on the host's physiology is tightly controlled by highly intertwined regulatory networks and achieves an efficient and balanced interplay between the host and its developing microbial community. Recent findings from germ-free mouse models have unravelled core transcriptional, metabolic and microbial signatures, which are proposed to orchestrate the molecular responses during the establishment of the multifaceted state of intestinal host-microbe homeostasis.
Exploring the time-resolved dynamics of the host responses to the newly colonizing gut microbiota provides mechanistically critical understanding of the sequential host-microbe response cascades that lead to a homeostatic relationship. Thereby, these approaches can provide novel diagnostic tools and therapeutic targets, or either of the two, in humans for specific disorders associated with intestinal dysbiosis and loss of homeostasis.
肠道微生物群与宿主之间的动态相互作用一直是许多研究的焦点,因为它会影响人类生活的健康状况。本文主要关注宿主和微生物群之间的免疫和代谢相互作用的时程,以及在建立宿主-微生物关系的过程中标记这种通讯的分子特征。
在微生物定植期间,肠道微生物群的新定植对宿主生理的逐渐影响受到高度交织的调控网络的严格控制,并实现了宿主与其不断发展的微生物群落之间的有效和平衡的相互作用。无菌小鼠模型的最新发现揭示了核心转录、代谢和微生物特征,这些特征被认为在建立肠道宿主-微生物稳态的多方面状态时协调分子反应。
探索宿主对新定植肠道微生物群的反应的时程动态,为导致稳态关系的顺序宿主-微生物反应级联提供了关键的机制理解。因此,这些方法可以为与肠道菌群失调和稳态丧失相关的特定疾病提供新型诊断工具和治疗靶点,或者两者兼而有之。