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Gut microbiome alterations in Alzheimer’s disease

Scientific Reports · 2017 · Vol. 7(1) · pp. 13537–13537
N. VogtRobert L. KerbyKimberly A. Dill‐McFarlandSandra HardingAndrew P. MerluzziSterling C. JohnsonCynthia M. CarlssonSanjay AsthanaHenrik ZetterbergKaj BlennowBarbara B. BendlinFederico E. Rey

Abstract

Alzheimer's disease (AD) is the most common form of dementia. However, the etiopathogenesis of this devastating disease is not fully understood. Recent studies in rodents suggest that alterations in the gut microbiome may contribute to amyloid deposition, yet the microbial communities associated with AD have not been characterized in humans. Towards this end, we characterized the bacterial taxonomic composition of fecal samples from participants with and without a diagnosis of dementia due to AD. Our analyses revealed that the gut microbiome of AD participants has decreased microbial diversity and is compositionally distinct from control age- and sex-matched individuals. We identified phylum- through genus-wide differences in bacterial abundance including decreased Firmicutes, increased Bacteroidetes, and decreased Bifidobacterium in the microbiome of AD participants. Furthermore, we observed correlations between levels of differentially abundant genera and cerebrospinal fluid (CSF) biomarkers of AD. These findings add AD to the growing list of diseases associated with gut microbial alterations, as well as suggest that gut bacterial communities may be a target for therapeutic intervention.

Gut microbiota and healthDiet and metabolism studiesTryptophan and brain disordersMicrobiomeFirmicutesBiologyBacteroidetesDiseaseDementiaGut floraAlzheimer's diseaseBifidobacteriumMetagenomics

MeSH terms

FirmicutesBacillotaGastrointestinal MicrobiomeAgedAlzheimer DiseaseBifidobacteriumFecesFemaleHumansMaleBiomarkersCase-Control Studiestau ProteinsBacteroidetes

Funding

  • Alzheimer's Association
  • Torsten Söderbergs Stiftelse
  • Rush University
  • Georgia Clinical and Translational Science Alliance
  • Royal Swedish Academy of Sciences
  • Vetenskapsrådet
  • National Institutes of Health
  • Institute for Clinical and Translational Research, University of Wisconsin, Madison
  • National Center for Advancing Translational Sciences
Citations
2,052
FWCI
45.45
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84
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100%
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Colonic bacterial composition in Parkinson's disease
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Obesity alters gut microbial ecology
Proceedings of the National Academy of Sciences · 2005 · 6,096 citations
Waste Not, Want Not: Why Rarefying Microbiome Data Is Inadmissible
PLoS Computational Biology · 2014 · 3,022 citations
Diabetes mellitus and the risk of dementia
Neurology · 1999 · 2,113 citations
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