Understanding the impact of antibiotic perturbation on the human microbiome

Abstract The human gut microbiome is a dynamic collection of bacteria, archaea, fungi, and viruses that performs essential functions for immune development, pathogen colonization resistance, and food metabolism. Perturbation of the gut microbiome’s ecological balance, commonly by antibiotics, can ca...

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Main Authors: D. J. Schwartz, A. E. Langdon, G. Dantas
Format: Article
Language:English
Published: BMC 2020-09-01
Series:Genome Medicine
Subjects:
Online Access:http://link.springer.com/article/10.1186/s13073-020-00782-x
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spelling doaj-2a81a1397e514b2fa977cf81181f28ed2020-11-25T03:57:02ZengBMCGenome Medicine1756-994X2020-09-0112111210.1186/s13073-020-00782-xUnderstanding the impact of antibiotic perturbation on the human microbiomeD. J. Schwartz0A. E. Langdon1G. Dantas2Department of Pediatrics, Division of Infectious Diseases, Washington University School of Medicine in St. LouisThe Edison Family Center for Genome Sciences & Systems Biology, Washington University School of Medicine in St. LouisThe Edison Family Center for Genome Sciences & Systems Biology, Washington University School of Medicine in St. LouisAbstract The human gut microbiome is a dynamic collection of bacteria, archaea, fungi, and viruses that performs essential functions for immune development, pathogen colonization resistance, and food metabolism. Perturbation of the gut microbiome’s ecological balance, commonly by antibiotics, can cause and exacerbate diseases. To predict and successfully rescue such perturbations, first, we must understand the underlying taxonomic and functional dynamics of the microbiome as it changes throughout infancy, childhood, and adulthood. We offer an overview of the healthy gut bacterial architecture over these life stages and comment on vulnerability to short and long courses of antibiotics. Second, the resilience of the microbiome after antibiotic perturbation depends on key characteristics, such as the nature, timing, duration, and spectrum of a course of antibiotics, as well as microbiome modulatory factors such as age, travel, underlying illness, antibiotic resistance pattern, and diet. In this review, we discuss acute and chronic antibiotic perturbations to the microbiome and resistome in the context of microbiome stability and dynamics. We specifically discuss key taxonomic and resistance gene changes that accompany antibiotic treatment of neonates, children, and adults. Restoration of a healthy gut microbial ecosystem after routine antibiotics will require rationally managed exposure to specific antibiotics and microbes. To that end, we review the use of fecal microbiota transplantation and probiotics to direct recolonization of the gut ecosystem. We conclude with our perspectives on how best to assess, predict, and aid recovery of the microbiome after antibiotic perturbation.http://link.springer.com/article/10.1186/s13073-020-00782-xGut microbiomeResistomeAntibioticsPerturbationResilienceDynamics
collection DOAJ
language English
format Article
sources DOAJ
author D. J. Schwartz
A. E. Langdon
G. Dantas
spellingShingle D. J. Schwartz
A. E. Langdon
G. Dantas
Understanding the impact of antibiotic perturbation on the human microbiome
Genome Medicine
Gut microbiome
Resistome
Antibiotics
Perturbation
Resilience
Dynamics
author_facet D. J. Schwartz
A. E. Langdon
G. Dantas
author_sort D. J. Schwartz
title Understanding the impact of antibiotic perturbation on the human microbiome
title_short Understanding the impact of antibiotic perturbation on the human microbiome
title_full Understanding the impact of antibiotic perturbation on the human microbiome
title_fullStr Understanding the impact of antibiotic perturbation on the human microbiome
title_full_unstemmed Understanding the impact of antibiotic perturbation on the human microbiome
title_sort understanding the impact of antibiotic perturbation on the human microbiome
publisher BMC
series Genome Medicine
issn 1756-994X
publishDate 2020-09-01
description Abstract The human gut microbiome is a dynamic collection of bacteria, archaea, fungi, and viruses that performs essential functions for immune development, pathogen colonization resistance, and food metabolism. Perturbation of the gut microbiome’s ecological balance, commonly by antibiotics, can cause and exacerbate diseases. To predict and successfully rescue such perturbations, first, we must understand the underlying taxonomic and functional dynamics of the microbiome as it changes throughout infancy, childhood, and adulthood. We offer an overview of the healthy gut bacterial architecture over these life stages and comment on vulnerability to short and long courses of antibiotics. Second, the resilience of the microbiome after antibiotic perturbation depends on key characteristics, such as the nature, timing, duration, and spectrum of a course of antibiotics, as well as microbiome modulatory factors such as age, travel, underlying illness, antibiotic resistance pattern, and diet. In this review, we discuss acute and chronic antibiotic perturbations to the microbiome and resistome in the context of microbiome stability and dynamics. We specifically discuss key taxonomic and resistance gene changes that accompany antibiotic treatment of neonates, children, and adults. Restoration of a healthy gut microbial ecosystem after routine antibiotics will require rationally managed exposure to specific antibiotics and microbes. To that end, we review the use of fecal microbiota transplantation and probiotics to direct recolonization of the gut ecosystem. We conclude with our perspectives on how best to assess, predict, and aid recovery of the microbiome after antibiotic perturbation.
topic Gut microbiome
Resistome
Antibiotics
Perturbation
Resilience
Dynamics
url http://link.springer.com/article/10.1186/s13073-020-00782-x
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