Literature DB >> 26963277

Impact of probiotic supplements on microbiome diversity following antibiotic treatment of mice.

Hannah Grazul1, L Leann Kanda1, David Gondek1.   

Abstract

Shifts in microbial populations of the intestinal tract have been associated with a multitude of nutritional, autoimmune, and infectious diseases. The limited diversity following antibiotic treatments creates a window for opportunistic pathogens, diarrhea, and inflammation as the microbiome repopulates. Depending on the antibiotics used, microbial diversity can take weeks to months to recover. To alleviate this loss of diversity in the intestinal microbiota, supplementation with probiotics has become increasingly popular. However, our understanding of the purported health benefits of these probiotic bacteria and their ability to shape the microbiome is significantly lacking. This study examined the impact of probiotics concurrent with antibiotic treatment or during the recovery phase following antibiotic treatment of mice. We found that probiotics did not appear to colonize the intestine themselves or shift the overall diversity of the intestinal microbiota. However, the probiotic supplementation did significantly change the types of bacteria which were present. In particular, during the recovery phase the probiotic caused a suppression of Enterobacteriaceae outgrowth (Shigella and Escherichia) while promoting a blooming of Firmicutes, particularly from the Anaerotruncus genus. These results indicate that probiotics have a significant capacity to remodel the microbiome of an individual recovering from antibiotic therapy.

Entities:  

Keywords:  16S rRNA; anaerotruncus; antibiotic; microbiome; probiotic; sequencing

Mesh:

Substances:

Year:  2016        PMID: 26963277      PMCID: PMC4856465          DOI: 10.1080/19490976.2016.1138197

Source DB:  PubMed          Journal:  Gut Microbes        ISSN: 1949-0976


  59 in total

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4.  Towards the human intestinal microbiota phylogenetic core.

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7.  Reproducible community dynamics of the gastrointestinal microbiota following antibiotic perturbation.

Authors:  Dionysios A Antonopoulos; Susan M Huse; Hilary G Morrison; Thomas M Schmidt; Mitchell L Sogin; Vincent B Young
Journal:  Infect Immun       Date:  2009-03-23       Impact factor: 3.441

8.  Antibiotic-Induced Alterations of the Murine Gut Microbiota and Subsequent Effects on Colonization Resistance against Clostridium difficile.

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10.  Hypothesis testing and power calculations for taxonomic-based human microbiome data.

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Authors:  Aparna Mitra; Greyson Willis Grossman Biegert; Andrea Y Delgado; Tatiana V Karpinets; Travis N Solley; Melissa P Mezzari; Kyoko Yoshida-Court; Joe F Petrosino; Megan D Mikkelson; Lilie Lin; Patricia Eifel; Jianhua Zhang; Lois M Ramondetta; Anuja Jhingran; Travis T Sims; Kathleen Schmeler; Pablo Okhuysen; Lauren E Colbert; Ann H Klopp
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4.  Characterization of Gastric Microbiota in Twins.

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5.  Exposure to air pollutants and the gut microbiota: a potential link between exposure, obesity, and type 2 diabetes.

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6.  Effect of Debaryomyces hansenii combined with Qiweibaizhu powder extract on the gut microbiota of antibiotic-treated mice with diarrhea.

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Review 8.  Molecular mechanisms of probiotic prevention of antibiotic-associated diarrhea.

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Journal:  Curr Opin Biotechnol       Date:  2020-02-19       Impact factor: 9.740

Review 9.  Role of microbes in the pathogenesis of neuropsychiatric disorders.

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10.  Lactobacillus animalis pZL8a: a potential probiotic isolated from pig feces for further research.

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