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The gut microbiota influences blood-brain barrier permeability in mice

Science Translational Medicine · 2014 · Vol. 6(263) · pp. 263ra158–263ra158
Viorica BranisteMaha Al‐AsmakhCzeslawa KowalFarhana AnuarAfrouz AbbaspourMiklós TóthAgata KoreckaNadja BakočevićLai Guan NgParag KunduBalázs GulyásChrister HalldinKjell HultenbyHarriet E. NilssonHans HebertBruce T. VolpeBetty DiamondSven Pettersson

Abstract

Pivotal to brain development and function is an intact blood-brain barrier (BBB), which acts as a gatekeeper to control the passage and exchange of molecules and nutrients between the circulatory system and the brain parenchyma. The BBB also ensures homeostasis of the central nervous system (CNS). We report that germ-free mice, beginning with intrauterine life, displayed increased BBB permeability compared to pathogen-free mice with a normal gut flora. The increased BBB permeability was maintained in germ-free mice after birth and during adulthood and was associated with reduced expression of the tight junction proteins occludin and claudin-5, which are known to regulate barrier function in endothelial tissues. Exposure of germ-free adult mice to a pathogen-free gut microbiota decreased BBB permeability and up-regulated the expression of tight junction proteins. Our results suggest that gut microbiota-BBB communication is initiated during gestation and propagated throughout life.

Gut microbiota and healthBarrier Structure and Function StudiesDrug Transport and Resistance MechanismsOccludinTight junctionBlood–brain barrierClaudinBarrier functionBiologyCentral nervous systemGut floraParenchymaGut–brain axis

MeSH terms

AnimalsBlood-Brain BarrierFemaleIntestinesPermeabilityPregnancyTight JunctionsMiceMicrobiota

Funding

  • European Commission
  • Vetenskapsrådet
  • Office of Naval Research
  • National Institute of Mental Health
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