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The Role of Diet and Gut Microbiota in Alzheimer’s Disease

D.M.S.H. Dissanayaka, Vijay Jayasena, Stephanie R. Rainey‐Smith, Ralph N. Martins, Warnakulasuriya Mary Ann Dipika Binosha Fernando

2024Nutrients66 citationsDOIOpen Access PDF

Abstract

Alzheimer's disease (AD), the most prevalent form of dementia, is characterized by the accumulation of amyloid-beta (Aβ) plaques and hyperphosphorylated tau tangles. Currently, Alzheimer's disease (AD) impacts 50 million individuals, with projections anticipating an increase to 152 million by the year 2050. Despite the increasing global prevalence of AD, its underlying pathology remains poorly understood, posing challenges for early diagnosis and treatment. Recent research suggests a link between gut dysbiosis and the aggregation of Aβ, the development of tau proteins, and the occurrence of neuroinflammation and oxidative stress are associated with AD. However, investigations into the gut-brain axis (GBA) in the context of AD progression and pathology have yielded inconsistent findings. This review aims to enhance our understanding of microbial diversity at the species level and the role of these species in AD pathology. Additionally, this review addresses the influence of confounding elements, including diet, probiotics, and prebiotics, on AD throughout different stages (preclinical, mild cognitive impairment (MCI), and AD) of its progression.

Topics & Concepts

DysbiosisDementiaDiseaseContext (archaeology)Gut floraAlzheimer's diseaseNeuroinflammationCognitive declineAmyloid (mycology)Oxidative stressAmyloid betaMedicineBiologyNeuroscienceGerontologyBioinformaticsPathologyImmunologyInternal medicinePaleontologyGut microbiota and healthAlzheimer's disease research and treatmentsTryptophan and brain disorders
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