Aβ and Tau Regulate Microglia Metabolism via Exosomes in Alzheimer's Disease

Yuanxin Zhao1, Buhan Liu1, Jian Wang1

  • 1Key Laboratory of Pathobiology, Department of Pathophysiology, Ministry of Education, College of Basic Medical Sciences, Jilin University, 126 Xinmin Street, Changchun 130021, China.

Biomedicines
|July 27, 2022
PubMed

Insights

Alzheimer's disease involves neuroinflammation driven by microglia. This review proposes that amyloid-beta and tau oligomers, spread via exosomes, reprogram microglia metabolism, altering the neuroinflammatory environment.

Area of Science:

  • Neuroscience
  • Immunology
  • Cell Biology

Background:

  • Neuroinflammation, particularly microglia-mediated, is a hallmark of neurodegenerative diseases like Alzheimer's disease (AD).
  • AD pathology involves amyloid-beta (Aβ) plaques and tau tangles, with Aβ and tau proteins as key components.
  • Microglia-neuron crosstalk is crucial for brain homeostasis, and microglia metabolism influences their immune response.

Purpose of the Study:

  • To explore the controversial relationship between neurodegenerative proteins (Aβ and tau oligomers) and microglia metabolism in neuroinflammation.
  • To propose a mechanism by which Aβ and tau oligomers propagate and induce metabolic reprogramming in microglia.
  • To highlight the role of microglia metabolic reprogramming in the neuroinflammatory microenvironment of AD.

Main Methods:

  • This review synthesizes current research on microglia metabolism, neuroinflammation, and AD pathology.
  • It examines the proposed role of exosomes in the propagation of Aβ and tau oligomers.
  • The review focuses on the concept of microglia metabolic reprogramming as a response to these pathological proteins.

Main Results:

  • Accumulation of Aβ oligomer and tau oligomer is proposed to propagate via exosomes to adjacent microglia.
  • This propagation leads to microglia metabolic reprogramming, altering their function.
  • The altered microglia metabolism contributes to the neuroinflammatory microenvironment characteristic of AD.

Conclusions:

  • Aβ and tau oligomers can propagate through exosomes, inducing microglia metabolic reprogramming.
  • Microglia metabolic reprogramming plays a key role in regulating the neuroinflammatory response in AD.
  • Understanding this relationship offers new therapeutic strategies for Alzheimer's disease.