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Minireview: Gut Microbiota: The Neglected Endocrine Organ

Molecular Endocrinology · 2014 · Vol. 28(8) · pp. 1221–1238
Gerard ClarkeRoman M. StillingPaul J. KennedyCatherine StantonJohn F. CryanTimothy G. Dinan

Abstract

The concept that the gut microbiota serves as a virtual endocrine organ arises from a number of important observations. Evidence for a direct role arises from its metabolic capacity to produce and regulate multiple compounds that reach the circulation and act to influence the function of distal organs and systems. For example, metabolism of carbohydrates results in the production of short-chain fatty acids, such as butyrate and propionate, which provide an important source of nutrients as well as regulatory control of the host digestive system. This influence over host metabolism is also seen in the ability of the prebiotic inulin to influence production of relevant hormones such as glucagon-like peptide-1, peptide YY, ghrelin, and leptin. Moreover, the probiotic Lactobacillus rhamnosus PL60, which produces conjugated linoleic acid, has been shown to reduce body-weight gain and white adipose tissue without effects on food intake. Manipulating the microbial composition of the gastrointestinal tract modulates plasma concentrations of tryptophan, an essential amino acid and precursor to serotonin, a key neurotransmitter within both the enteric and central nervous systems. Indirectly and through as yet unknown mechanisms, the gut microbiota exerts control over the hypothalamic-pituitary-adrenal axis. This is clear from studies on animals raised in a germ-free environment, who show exaggerated responses to psychological stress, which normalizes after monocolonization by certain bacterial species including Bifidobacterium infantis. It is tempting to speculate that therapeutic targeting of the gut microbiota may be useful in treating stress-related disorders and metabolic diseases.

Gut microbiota and healthDiet and metabolism studiesGastrointestinal motility and disordersBiologyGut floraPeptide YYGhrelinLactobacillus rhamnosusEndocrine systemEnteroendocrine cellPrebioticHormoneEndocrinology

MeSH terms

AnimalsHormonesHumansHypothalamo-Hypophyseal SystemPituitary-Adrenal SystemTryptophanGastrointestinal TractMicrobiota

Funding

  • Brain and Behavior Research Foundation
  • Pfizer
  • Mead Johnson Nutrition
  • National Alliance for Research on Schizophrenia and Depression
  • Health Research Board
  • Science Foundation Ireland
  • Alimentary Health
Citations
1,153
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24.20
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References
214
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References
Establishment of the gut microbiota in Western infants
Acta Paediatrica · 2009 · 655 citations
Effects of conjugated linoleic acid on body fat and energy metabolism in the mouse
American Journal of Physiology-Regulatory, Integrative and Comparative Physiology · 1998 · 469 citations
Obesity alters gut microbial ecology
Proceedings of the National Academy of Sciences · 2005 · 6,096 citations
Psychobiotics: A Novel Class of Psychotropic
Biological Psychiatry · 2013 · 1,240 citations
Short chain fatty acids in the human colon.
Gut · 1981 · 1,045 citations
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