The analysis identified 59 bacterial species associated with either mild cognitive impairment or Alzheimer’s disease. Interestingly, even closely related bacteria appeared to play different roles: some species were more abundant in cognitively healthy participants, while others were enriched in individuals with cognitive decline.
The researchers also found that these microbes operate as interconnected communities rather than in isolation. Interactions among bacterial species may alter key metabolic functions—including pathways involved in branched-chain amino acid biosynthesis—that are associated with amyloid accumulation and neurodegeneration.
These findings suggest that it is the overall balance of the gut ecosystem, rather than any single bacterial species, that may influence brain health.
Toward Personalized Strategies for Dementia Prevention
Professor Yi-Fang Chuang of NYCU’s Institute of Public Health, who led the study, said the research represents an important step toward understanding how gut microbes may contribute to Alzheimer’s disease.
“Although we observed a clear association between the gut microbiome and Alzheimer’s biomarkers, the underlying biological mechanisms remain to be clarified,” Chuang said. “Future longitudinal studies will be needed to determine whether microbial changes contribute to disease progression or are themselves a consequence of neurodegeneration.”
She added that gut microbial composition varies considerably across populations because of differences in genetics, diet, and lifestyle. Consequently, findings from Western populations cannot always be generalized to Asian communities.
By establishing one of Taiwan’s most comprehensive datasets linking gut microbiomes, brain imaging, and Alzheimer’s biomarkers, the study provides a valuable resource for future dementia research and opens new possibilities for developing microbiome-based strategies to predict, prevent, and eventually slow the progression of Alzheimer’s disease.
Professor Yi-Fang Chuang led the study, which combines microbiome analysis, brain imaging, and Alzheimer’s disease biomarkers to advance dementia research.