Multi-compartment profiling of bacterial and host metabolites identifies intestinal dysbiosis and its functional consequences in the critically ill child
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Author(s)
Type
Journal Article
Abstract
OBJECTIVES: Adverse physiology and antibiotic exposure devastate the intestinal microbiome in critical illness. Time and cost implications limit the immediate clinical potential of microbial sequencing to identify or treat intestinal dysbiosis. Here, we examined whether metabolic profiling is a feasible method of monitoring intestinal dysbiosis in critically ill children. DESIGN: Prospective multicenter cohort study. SETTING: Three U.K.-based PICUs. PATIENTS: Mechanically ventilated critically ill (n = 60) and age-matched healthy children (n = 55). INTERVENTIONS: Collection of urine and fecal samples in children admitted to the PICU. A single fecal and urine sample was collected in healthy controls. MEASUREMENTS AND MAIN RESULTS: Untargeted and targeted metabolic profiling using 1H-nuclear magnetic resonance spectroscopy and liquid chromatography-mass spectrometry or urine and fecal samples. This was integrated with analysis of fecal bacterial 16S ribosomal RNA profiles and clinical disease severity indicators. We observed separation of global urinary and fecal metabolic profiles in critically ill compared with healthy children. Urinary excretion of mammalian-microbial co-metabolites hippurate, 4-cresol sulphate, and formate were reduced in critical illness compared with healthy children. Reduced fecal excretion of short-chain fatty acids (including butyrate, propionate, and acetate) were observed in the patient cohort, demonstrating that these metabolites also distinguished between critical illness and health. Dysregulation of intestinal bile metabolism was evidenced by increased primary and reduced secondary fecal bile acid excretion. Fecal butyrate correlated with days free of intensive care at 30 days (r = 0.38; p = 0.03), while urinary formate correlated inversely with vasopressor requirement (r = -0.2; p = 0.037). CONCLUSIONS: Disruption to the functional activity of the intestinal microbiome may result in worsening organ failure in the critically ill child. Profiling of bacterial metabolites in fecal and urine samples may support identification and treatment of intestinal dysbiosis in critical illness.This is an open access article distributed under the Creative Commons Attribution License 4.0 (CCBY), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
Date Issued
2019-06-04
Date Acceptance
2019-06-01
Citation
Critical Care Medicine, 2019, 47 (9), pp.e727-e734
ISSN
0090-3493
Publisher
Lippincott, Williams & Wilkins
Start Page
e727
End Page
e734
Journal / Book Title
Critical Care Medicine
Volume
47
Issue
9
Copyright Statement
© 2019 The Author(s). Published by Wolters Kluwer Health,
Inc. on behalf of the Society of Critical Care Medicine and Wolters Kluwer
Health, Inc. This is an open access article distributed under the Creative
Commons Attribution License 4.0 (CCBY) (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted
use, distribution, and reproduction in any medium, provided the original
work is properly cited.
Inc. on behalf of the Society of Critical Care Medicine and Wolters Kluwer
Health, Inc. This is an open access article distributed under the Creative
Commons Attribution License 4.0 (CCBY) (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted
use, distribution, and reproduction in any medium, provided the original
work is properly cited.
Identifier
https://www.ncbi.nlm.nih.gov/pubmed/31169619
Subjects
Science & Technology
Life Sciences & Biomedicine
Critical Care Medicine
General & Internal Medicine
16S ribosomal ribonucleic acid gene sequencing
critical illness
critically ill child
gut health
intestinal microbiome
metabolomics
CHAIN FATTY-ACIDS
INFANTS
URINARY
1103 Clinical Sciences
1110 Nursing
1117 Public Health and Health Services
Emergency & Critical Care Medicine
Publication Status
Published
Coverage Spatial
United States
Date Publish Online
2019-09-01