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Dietary Fiber Modulates the Release of Gut Bacterial Products Preventing Cognitive Decline in an Alzheimer’s Mouse Model

  • ,
  • Tauqeerunnisa Syeda
    ,
  • Vicente Sánchez-Valle
    ,
  • Mariangel Irene-Fierro
    ,
  • Pablo Torres-Aguilar
    ,
  • Mónica Adriana Torres-Ramos
  • Centro de Investigacion y de Estudios Avanzados del Instituto Politécnico Nacional
    ,
  • Instituto de Neurología y Neurocirugía Manuel Velasco Suárez (INNNMVS)
    ,
  • Instituto Nacional de Ciencias Medicas y Nutricion Salvador Zubiran
    ,
  • Universidad San Sebastián
Research Output: Contribución a una revista Artículo Revisión por expertos

Acceso abierto

Publication Information

Tipo de resultado

Research Output: Contribución a una revista Artículo Revisión por expertos

Idioma original

Inglés

Páginas desde-hasta (Número de páginas)

Páginas 1595-1618 (24 páginas)

Revista (Volumen, Número de Edición)

Cellular and Molecular Neurobiology (Volumen 43, Número 4)

Hitos de publicación

  • Publicada - 01/05/2023

Estado de publicación

Publicada - 01/05/2023

ISSN

0272-4340

ID de publicación externa

  • Scopus: 85135804578
  • PubMed: 35953741

Abstract

Fiber intake is associated with a lower risk for Alzheimer´s disease (AD) in older adults. Intake of plant-based diets rich in soluble fiber promotes the production of short-chain fatty acids (SCFAs: butyrate, acetate, propionate) by gut bacteria. Butyrate administration has antiinflammatory actions, but propionate promotes neuroinflammation. In AD patients, gut microbiota dysbiosis is a common feature even in the prodromal stages of the disease. It is unclear whether the neuroprotective effects of fiber intake rely on gut microbiota modifications and specific actions of SCFAs in brain cells. Here, we show that restoration of the gut microbiota dysbiosis through the intake of soluble fiber resulted in lower propionate and higher butyrate production, reduced astrocyte activation and improved cognitive function in 6-month-old male APP/PS1 mice. The neuroprotective effects were lost in antibiotic-treated mice. Moreover, propionate promoted higher glycolysis and mitochondrial respiration in astrocytes, while butyrate induced a more quiescent metabolism. Therefore, fiber intake neuroprotective action depends on the modulation of butyrate/propionate production by gut bacteria. Our data further support and provide a mechanism to explain the beneficial effects of dietary interventions rich in soluble fiber to prevent dementia and AD. Graphical Abstract: Fiber intake restored the concentration of propionate and butyrate by modulating the composition of gut microbiota in male transgenic (Tg) mice with Alzheimer´s disease. Gut dysbiosis was associated with intestinal damage and high propionate levels in control diet fed-Tg mice. Fiber-rich diet restored intestinal integrity and promoted the abundance of butyrate-producing bacteria. Butyrate concentration was associated with better cognitive performance in fiber-fed Tg mice. A fiber-rich diet may prevent the development of a dysbiotic microbiome and the related cognitive dysfunction in people at risk of developing Alzheimer´s disease. [Figure not available: see fulltext.]