Scinovex
articleTop 1% cited

Changes in intestinal microbiota composition and metabolism coincide with increased intestinal permeability in young adults under prolonged physiological stress

J. Philip KarlLee M. MargolisElisabeth Henie MadslienNancy E. MurphyJohn W. CastellaniYngvar GundersenAllison HokeMichael W. LevangieRaina KumarNabarun ChakrabortyAarti GautamRasha HammamiehSvein MartiniScott J. MontainStefan M. Pasiakos

Abstract

The magnitude, temporal dynamics, and physiological effects of intestinal microbiome responses to physiological stress are poorly characterized. This study used a systems biology approach and a multiple-stressor military training environment to determine the effects of physiological stress on intestinal microbiota composition and metabolic activity, as well as intestinal permeability (IP). Soldiers (<i>n</i> = 73) were provided three rations per day with or without protein- or carbohydrate-based supplements during a 4-day cross-country ski-march (STRESS). IP was measured before and during STRESS. Blood and stool samples were collected before and after STRESS to measure inflammation, stool microbiota, and stool and plasma global metabolite profiles. IP increased 62 ± 57% (mean ± SD, <i>P</i> < 0.001) during STRESS independent of diet group and was associated with increased inflammation. Intestinal microbiota responses were characterized by increased α-diversity and changes in the relative abundance of >50% of identified genera, including increased abundance of less dominant taxa at the expense of more dominant taxa such as <i>Bacteroides</i> Changes in intestinal microbiota composition were linked to 23% of metabolites that were significantly altered in stool after STRESS. Together, pre-STRESS Actinobacteria relative abundance and changes in serum IL-6 and stool cysteine concentrations accounted for 84% of the variability in the change in IP. Findings demonstrate that a multiple-stressor military training environment induced increases in IP that were associated with alterations in markers of inflammation and with intestinal microbiota composition and metabolism. Associations between IP, the pre-STRESS microbiota, and microbiota metabolites suggest that targeting the intestinal microbiota could provide novel strategies for preserving IP during physiological stress.<b>NEW & NOTEWORTHY</b> Military training, a unique model for studying temporal dynamics of intestinal barrier and intestinal microbiota responses to stress, resulted in increased intestinal permeability concomitant with changes in intestinal microbiota composition and metabolism. Prestress intestinal microbiota composition and changes in fecal concentrations of metabolites linked to the microbiota were associated with increased intestinal permeability. Findings suggest that targeting the intestinal microbiota could provide novel strategies for mitigating increases in intestinal permeability during stress.

Gut microbiota and healthDiet and metabolism studiesDietary Effects on HealthGut floraBiologyBacteroidesMicrobiomeIntestinal permeabilityInflammationImmunologyPhysiologyBacteriaBioinformatics

MeSH terms

Gastrointestinal MicrobiomeAdolescentAge FactorsBacteriaDietary CarbohydratesDietary ProteinsEnergy MetabolismFecesFemaleHumansIntestinal AbsorptionIntestinal MucosaIntestinesMaleMilitary Medicine

Funding

  • Defense Health Agency
  • Medical Research and Materiel Command
Citations
360
FWCI
12.09
field-weighted impact
References
57
Percentile
99%
vs. same field & year
Citations per year
Cited by
Gut microbiota in obesity
World Journal of Gastroenterology · 2021 · 565 citations
Current understanding of the human microbiome
Nature Medicine · 2018 · 2,573 citations
The Vagus Nerve at the Interface of the Microbiota-Gut-Brain Axis
Frontiers in Neuroscience · 2018 · 1,212 citations
The Microbiota-Gut-Brain Axis
Physiological Reviews · 2019 · 4,495 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.

Changes in intestinal microbiota composition and metabolism coincide with increased intestinal permeability in young adults under prolonged physiological stress · Scinovex