Reconstitution of the gut microbiota of antibiotic-treated patients by autologous fecal microbiota transplant

Antibiotic treatment can deplete the commensal bacteria of a patient's gut microbiota and, paradoxically, increase their risk of subsequent infections. In allogeneic hematopoietic stem cell transplantation (allo-HSCT), antibiotic administration is essential for optimal clinical outcomes but sig...

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Published inScience translational medicine Vol. 10; no. 460
Main Authors Taur, Ying, Coyte, Katharine, Schluter, Jonas, Robilotti, Elizabeth, Figueroa, Cesar, Gjonbalaj, Mergim, Littmann, Eric R, Ling, Lilan, Miller, Liza, Gyaltshen, Yangtsho, Fontana, Emily, Morjaria, Sejal, Gyurkocza, Boglarka, Perales, Miguel-Angel, Castro-Malaspina, Hugo, Tamari, Roni, Ponce, Doris, Koehne, Guenther, Barker, Juliet, Jakubowski, Ann, Papadopoulos, Esperanza, Dahi, Parastoo, Sauter, Craig, Shaffer, Brian, Young, James W, Peled, Jonathan, Meagher, Richard C, Jenq, Robert R, van den Brink, Marcel R M, Giralt, Sergio A, Pamer, Eric G, Xavier, Joao B
Format Journal Article
LanguageEnglish
Published United States 26.09.2018
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Abstract Antibiotic treatment can deplete the commensal bacteria of a patient's gut microbiota and, paradoxically, increase their risk of subsequent infections. In allogeneic hematopoietic stem cell transplantation (allo-HSCT), antibiotic administration is essential for optimal clinical outcomes but significantly disrupts intestinal microbiota diversity, leading to loss of many beneficial microbes. Although gut microbiota diversity loss during allo-HSCT is associated with increased mortality, approaches to reestablish depleted commensal bacteria have yet to be developed. We have initiated a randomized, controlled clinical trial of autologous fecal microbiota transplantation (auto-FMT) versus no intervention and have analyzed the intestinal microbiota profiles of 25 allo-HSCT patients (14 who received auto-FMT treatment and 11 control patients who did not). Changes in gut microbiota diversity and composition revealed that the auto-FMT intervention boosted microbial diversity and reestablished the intestinal microbiota composition that the patient had before antibiotic treatment and allo-HSCT. These results demonstrate the potential for fecal sample banking and posttreatment remediation of a patient's gut microbiota after microbiota-depleting antibiotic treatment during allo-HSCT.
AbstractList Antibiotic treatment can deplete the commensal bacteria of a patient's gut microbiota and, paradoxically, increase their risk of subsequent infections. In allogeneic hematopoietic stem cell transplantation (allo-HSCT), antibiotic administration is essential for optimal clinical outcomes but significantly disrupts intestinal microbiota diversity, leading to loss of many beneficial microbes. Although gut microbiota diversity loss during allo-HSCT is associated with increased mortality, approaches to reestablish depleted commensal bacteria have yet to be developed. We have initiated a randomized, controlled clinical trial of autologous fecal microbiota transplantation (auto-FMT) versus no intervention and have analyzed the intestinal microbiota profiles of 25 allo-HSCT patients (14 who received auto-FMT treatment and 11 control patients who did not). Changes in gut microbiota diversity and composition revealed that the auto-FMT intervention boosted microbial diversity and reestablished the intestinal microbiota composition that the patient had before antibiotic treatment and allo-HSCT. These results demonstrate the potential for fecal sample banking and posttreatment remediation of a patient's gut microbiota after microbiota-depleting antibiotic treatment during allo-HSCT.
Author Ling, Lilan
Giralt, Sergio A
Xavier, Joao B
Perales, Miguel-Angel
Ponce, Doris
Meagher, Richard C
Shaffer, Brian
Figueroa, Cesar
Castro-Malaspina, Hugo
Koehne, Guenther
Barker, Juliet
van den Brink, Marcel R M
Jenq, Robert R
Miller, Liza
Sauter, Craig
Papadopoulos, Esperanza
Peled, Jonathan
Coyte, Katharine
Littmann, Eric R
Gjonbalaj, Mergim
Jakubowski, Ann
Pamer, Eric G
Fontana, Emily
Morjaria, Sejal
Dahi, Parastoo
Young, James W
Gyaltshen, Yangtsho
Robilotti, Elizabeth
Schluter, Jonas
Tamari, Roni
Gyurkocza, Boglarka
Taur, Ying
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BackLink https://www.ncbi.nlm.nih.gov/pubmed/30257956$$D View this record in MEDLINE/PubMed
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ContentType Journal Article
Copyright Copyright © 2018 The Authors, some rights reserved; exclusive licensee American Association for the Advancement of Science. No claim to original U.S. Government Works.
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PublicationTitle Science translational medicine
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Snippet Antibiotic treatment can deplete the commensal bacteria of a patient's gut microbiota and, paradoxically, increase their risk of subsequent infections. In...
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SubjectTerms Anti-Bacterial Agents - pharmacology
Biodiversity
Fecal Microbiota Transplantation
Gastrointestinal Microbiome - drug effects
Hematopoietic Stem Cell Transplantation
Humans
Longitudinal Studies
Transplantation, Autologous
Title Reconstitution of the gut microbiota of antibiotic-treated patients by autologous fecal microbiota transplant
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