Antibiotic-induced Disruption of Intestinal Microbiota Contributes to Failure of Vertical Sleeve Gastrectomy.


Journal

Annals of surgery
ISSN: 1528-1140
Titre abrégé: Ann Surg
Pays: United States
ID NLM: 0372354

Informations de publication

Date de publication:
06 2019
Historique:
entrez: 15 5 2019
pubmed: 15 5 2019
medline: 17 1 2020
Statut: ppublish

Résumé

The aim of this study was to test whether the perioperative composition of intestinal microbiota can contribute to variable outcomes following vertical sleeve gastrectomy (VSG). Although bariatric surgery is the most effective treatment for obesity, metabolic outcomes are variable. Diet-induced obese mice were randomized to VSG or sham surgery, with or without exposure to antibiotics that selectively suppress mainly gram-positive (fidaxomicin, streptomycin) or gram-negative (ceftriaxone) bacteria on postoperative days (POD) 1-4. Fecal microbiota was characterized before surgery and on POD 7 and 28. Mice were metabolically characterized on POD 30-32 and euthanized on POD 35. VSG resulted in weight loss and shifts in the intestinal microbiota composition relative to sham-operated mice. Antibiotic exposure resulted in sustained reductions in alpha (within-sample) diversity of microbiota and shifts in its composition. All antibiotic treatments proved to be detrimental to metabolic VSG outcomes, regardless of antimicrobial specificity of antibiotics. These effects involved functionally distinct pathways. Specifically, fidaxomicin and streptomycin markedly altered hepatic bile acid signaling and lipid metabolism, while ceftriaxone resulted in greater reduction of key antimicrobial peptides. However, VSG mice exposed to antibiotics, regardless of their specificity, had significantly increased subcutaneous adiposity and impaired glucose homeostasis without changes in food intake relative to control VSG mice. Dysbiosis induced by brief perioperative antibiotic exposure attenuates weight loss and metabolic improvement following VSG. Potential mechanisms include disruption of bile acid homeostasis and reduction in the production of gut antimicrobial peptides. Results of this study implicate the intestinal microbiota as an important contributor to metabolic homeostasis and a potentially modifiable target influencing clinical outcomes following VSG.

Sections du résumé

OBJECTIVE
The aim of this study was to test whether the perioperative composition of intestinal microbiota can contribute to variable outcomes following vertical sleeve gastrectomy (VSG).
SUMMARY OF BACKGROUND DATA
Although bariatric surgery is the most effective treatment for obesity, metabolic outcomes are variable.
METHODS
Diet-induced obese mice were randomized to VSG or sham surgery, with or without exposure to antibiotics that selectively suppress mainly gram-positive (fidaxomicin, streptomycin) or gram-negative (ceftriaxone) bacteria on postoperative days (POD) 1-4. Fecal microbiota was characterized before surgery and on POD 7 and 28. Mice were metabolically characterized on POD 30-32 and euthanized on POD 35.
RESULTS
VSG resulted in weight loss and shifts in the intestinal microbiota composition relative to sham-operated mice. Antibiotic exposure resulted in sustained reductions in alpha (within-sample) diversity of microbiota and shifts in its composition. All antibiotic treatments proved to be detrimental to metabolic VSG outcomes, regardless of antimicrobial specificity of antibiotics. These effects involved functionally distinct pathways. Specifically, fidaxomicin and streptomycin markedly altered hepatic bile acid signaling and lipid metabolism, while ceftriaxone resulted in greater reduction of key antimicrobial peptides. However, VSG mice exposed to antibiotics, regardless of their specificity, had significantly increased subcutaneous adiposity and impaired glucose homeostasis without changes in food intake relative to control VSG mice.
CONCLUSION
Dysbiosis induced by brief perioperative antibiotic exposure attenuates weight loss and metabolic improvement following VSG. Potential mechanisms include disruption of bile acid homeostasis and reduction in the production of gut antimicrobial peptides. Results of this study implicate the intestinal microbiota as an important contributor to metabolic homeostasis and a potentially modifiable target influencing clinical outcomes following VSG.

Identifiants

pubmed: 31082907
doi: 10.1097/SLA.0000000000002729
pii: 00000658-201906000-00015
doi:

Substances chimiques

Anti-Bacterial Agents 0
Ceftriaxone 75J73V1629
Streptomycin Y45QSO73OB
Fidaxomicin Z5N076G8YQ

Types de publication

Journal Article Research Support, Non-U.S. Gov't

Langues

eng

Sous-ensembles de citation

IM

Pagination

1092-1100

Auteurs

Cyrus Jahansouz (C)

Department of Surgery, University of Minnesota, Minneapolis, MN.

Christopher Staley (C)

Department of Surgery, University of Minnesota, Minneapolis, MN.
BioTechnology Institute, University of Minnesota, St. Paul, MN.

Scott Kizy (S)

Department of Surgery, University of Minnesota, Minneapolis, MN.

Hongliang Xu (H)

Department of Biochemistry, Molecular Biology and Biophysics, University of Minnesota, Minneapolis, MN.

Ann V Hertzel (AV)

Department of Biochemistry, Molecular Biology and Biophysics, University of Minnesota, Minneapolis, MN.

Jessi Coryell (J)

Department of Surgery, University of Minnesota, Minneapolis, MN.

Stephanie Singroy (S)

BioTechnology Institute, University of Minnesota, St. Paul, MN.

Matthew Hamilton (M)

BioTechnology Institute, University of Minnesota, St. Paul, MN.

Meri DuRand (M)

Research Animal Resources, University of Minnesota, Minneapolis, MN.

David A Bernlohr (DA)

Department of Biochemistry, Molecular Biology and Biophysics, University of Minnesota, Minneapolis, MN.

Michael J Sadowsky (MJ)

BioTechnology Institute, University of Minnesota, St. Paul, MN.

Alexander Khoruts (A)

BioTechnology Institute, University of Minnesota, St. Paul, MN.
Department of Medicine, University of Minnesota, Minneapolis, MN.

Sayeed Ikramuddin (S)

Department of Surgery, University of Minnesota, Minneapolis, MN.

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Classifications MeSH