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子宫内的人类肠道拥有独特的代谢组,包括细菌代谢产物。

In utero human intestine harbors unique metabolome, including bacterial metabolites.

机构信息

Department of Biostatistics and.

Department of Immunology, University of Pittsburgh, Pittsburgh, Pennsylvania, USA.

出版信息

JCI Insight. 2020 Nov 5;5(21):138751. doi: 10.1172/jci.insight.138751.

Abstract

Symbiotic microbial colonization through the establishment of the intestinal microbiome is critical to many intestinal functions, including nutrient metabolism, intestinal barrier integrity, and immune regulation. Recent studies suggest that education of intestinal immunity may be ongoing in utero. However, the drivers of this process are unknown. The microbiome and its byproducts are one potential source. Whether a fetal intestinal microbiome exists is controversial, and whether microbially derived metabolites are present in utero is unknown. Here, we aimed to determine whether bacterial DNA and microbially derived metabolites can be detected in second trimester human intestinal samples. Although we were unable to amplify bacterial DNA from fetal intestines, we report a fetal metabolomic intestinal profile with an abundance of bacterially derived and host-derived metabolites commonly produced in response to microbiota. Though we did not directly assess their source and function, we hypothesize that these microbial-associated metabolites either come from the maternal microbiome and are vertically transmitted to the fetus to prime the fetal immune system and prepare the gastrointestinal tract for postnatal microbial encounters or are produced locally by bacteria that were below our detection threshold.

摘要

共生微生物定植通过建立肠道微生物组对于许多肠道功能至关重要,包括营养代谢、肠道屏障完整性和免疫调节。最近的研究表明,肠道免疫的教育可能在子宫内持续进行。然而,这个过程的驱动因素尚不清楚。微生物组及其产物是一个潜在的来源。胎儿肠道微生物组是否存在存在争议,并且在子宫内是否存在微生物衍生的代谢物尚不清楚。在这里,我们旨在确定是否可以在妊娠中期的人类肠道样本中检测到细菌 DNA 和微生物衍生的代谢物。尽管我们无法从胎儿肠道中扩增细菌 DNA,但我们报告了胎儿代谢组学肠道特征,其中存在大量细菌衍生和宿主衍生的代谢物,这些代谢物通常是对微生物群产生的反应。尽管我们没有直接评估它们的来源和功能,但我们假设这些与微生物相关的代谢物要么来自母体微生物组,并垂直传递给胎儿,以启动胎儿免疫系统并为胎儿胃肠道准备迎接产后微生物接触,要么由细菌产生,而这些细菌低于我们的检测阈值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/45f0/7710283/2cb366219f7a/jciinsight-5-138751-g160.jpg

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