Published November 3, 2016 | Version Accepted Version
Journal Article Open

The Central Nervous System and the Gut Microbiome

  • 1. ROR icon California Institute of Technology
  • 2. ROR icon University of California, Los Angeles

Abstract

Neurodevelopment is a complex process governed by both intrinsic and extrinsic signals. While historically studied by researching the brain, inputs from the periphery impact many neurological conditions. Indeed, emerging data suggest communication between the gut and the brain in anxiety, depression, cognition, and autism spectrum disorder (ASD). The development of a healthy, functional brain depends on key pre- and post-natal events that integrate environmental cues, such as molecular signals from the gut. These cues largely originate from the microbiome, the consortium of symbiotic bacteria that reside within all animals. Research over the past few years reveals that the gut microbiome plays a role in basic neurogenerative processes such as the formation of the blood-brain barrier, myelination, neurogenesis, and microglia maturation and also modulates many aspects of animal behavior. Herein, we discuss the biological intersection of neurodevelopment and the microbiome and explore the hypothesis that gut bacteria are integral contributors to development and function of the nervous system and to the balance between mental health and disease.

Additional Information

© 2016 Elsevier Inc. The authors apologize to colleagues whose work could not be included in this Review. We thank Drs. Hiutung Chu and Wei-li Wu, as well as Carly Stewart for critical reading of this manuscript. The authors are supported by the Meixner Postdoctoral Fellowship in Translational Research (to G.S.) and the Larry L. Hillblom Foundation Postdoctoral Fellowship (to T.R.S.). Related research in the Mazmanian laboratory is funded by grants from the NIH (MH100556, DK078938, GM099535, and NS085910), the Department of Defense, the Heritage Medical Research Institute, and the Simons Foundation. Related research in the Geschwind lab is supported by NIMH grants (HD055784, MH100027, MH110927, and MH1064382), and the Simons Foundation.

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Additional details

Identifiers

PMCID
PMC5127403
Eprint ID
71760
Resolver ID
CaltechAUTHORS:20161107-090306622

Funding

Autism Speaks
Larry L. Hillblom Foundation
NIH
MH100556
NIH
DK078938
NIH
GM099535
NIH
NS085910
Department of Defense
Heritage Medical Research Institute
Simons Foundation
NIH
HD055784
NIH
MH100027
NIH
MH110927
NIH
MH1064382

Dates

Created
2016-11-07
Created from EPrint's datestamp field
Updated
2022-04-08
Created from EPrint's last_modified field

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