In utero human intestine harbors unique metabolome, including bacterial metabolites

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....

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Main Authors: Yujia Li, Jessica M. Toothaker, Shira Ben-Simon, Lital Ozeri, Ron Schweitzer, Blake T. McCourt, Collin C. McCourt, Lael Werner, Scott B. Snapper, Dror S. Shouval, Soliman Khatib, Omry Koren, Sameer Agnihorti, George Tseng, Liza Konnikova
Format: Article
Language:English
Published: American Society for Clinical investigation 2020-11-01
Series:JCI Insight
Subjects:
Online Access:https://doi.org/10.1172/jci.insight.138751
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spelling doaj-ef1c98446f2f4064afe881ca89837ae72021-08-03T00:12:01ZengAmerican Society for Clinical investigationJCI Insight2379-37082020-11-01521In utero human intestine harbors unique metabolome, including bacterial metabolitesYujia LiJessica M. ToothakerShira Ben-SimonLital OzeriRon SchweitzerBlake T. McCourtCollin C. McCourtLael WernerScott B. SnapperDror S. ShouvalSoliman KhatibOmry KorenSameer AgnihortiGeorge TsengLiza KonnikovaSymbiotic 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.https://doi.org/10.1172/jci.insight.138751GastroenterologyMetabolism
collection DOAJ
language English
format Article
sources DOAJ
author Yujia Li
Jessica M. Toothaker
Shira Ben-Simon
Lital Ozeri
Ron Schweitzer
Blake T. McCourt
Collin C. McCourt
Lael Werner
Scott B. Snapper
Dror S. Shouval
Soliman Khatib
Omry Koren
Sameer Agnihorti
George Tseng
Liza Konnikova
spellingShingle Yujia Li
Jessica M. Toothaker
Shira Ben-Simon
Lital Ozeri
Ron Schweitzer
Blake T. McCourt
Collin C. McCourt
Lael Werner
Scott B. Snapper
Dror S. Shouval
Soliman Khatib
Omry Koren
Sameer Agnihorti
George Tseng
Liza Konnikova
In utero human intestine harbors unique metabolome, including bacterial metabolites
JCI Insight
Gastroenterology
Metabolism
author_facet Yujia Li
Jessica M. Toothaker
Shira Ben-Simon
Lital Ozeri
Ron Schweitzer
Blake T. McCourt
Collin C. McCourt
Lael Werner
Scott B. Snapper
Dror S. Shouval
Soliman Khatib
Omry Koren
Sameer Agnihorti
George Tseng
Liza Konnikova
author_sort Yujia Li
title In utero human intestine harbors unique metabolome, including bacterial metabolites
title_short In utero human intestine harbors unique metabolome, including bacterial metabolites
title_full In utero human intestine harbors unique metabolome, including bacterial metabolites
title_fullStr In utero human intestine harbors unique metabolome, including bacterial metabolites
title_full_unstemmed In utero human intestine harbors unique metabolome, including bacterial metabolites
title_sort in utero human intestine harbors unique metabolome, including bacterial metabolites
publisher American Society for Clinical investigation
series JCI Insight
issn 2379-3708
publishDate 2020-11-01
description 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.
topic Gastroenterology
Metabolism
url https://doi.org/10.1172/jci.insight.138751
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