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Early life antibiotic exposure affects pancreatic islet development and metabolic regulation.


ABSTRACT: Childhood antibiotic exposure has been recently linked with increased risk of metabolic disease later in life. A better understanding of this association would potentially provide strategies to reduce the childhood chronic disease epidemic. Therefore, we explored the underlying mechanisms using a swine model that better mimics human infants than rodents, and demonstrated that early life antibiotic exposure affects glucose metabolism 5 weeks after antibiotic withdrawal, which was associated with changes in pancreatic development. Antibiotics exerted a transient impact on postnatal gut microbiota colonization and microbial metabolite production, yet changes in the expression of key genes involved in short-chain fatty acid signaling and pancreatic development were detected in later life. These findings suggest a programming effect of early life antibiotic exposure that merits further investigation.

SUBMITTER: Li J 

PROVIDER: S-EPMC5288777 | biostudies-literature | 2017 Feb

REPOSITORIES: biostudies-literature

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Early life antibiotic exposure affects pancreatic islet development and metabolic regulation.

Li Jiaying J   Yang Kaiyuan K   Ju Tingting T   Ho Tracy T   McKay Catharine A CA   Gao Yanhua Y   Forget Shay K SK   Gartner Stephanie R SR   Field Catherine J CJ   Chan Catherine B CB   Willing Benjamin P BP  

Scientific reports 20170202


Childhood antibiotic exposure has been recently linked with increased risk of metabolic disease later in life. A better understanding of this association would potentially provide strategies to reduce the childhood chronic disease epidemic. Therefore, we explored the underlying mechanisms using a swine model that better mimics human infants than rodents, and demonstrated that early life antibiotic exposure affects glucose metabolism 5 weeks after antibiotic withdrawal, which was associated with  ...[more]

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