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Impaired Mitophagy in Neurons and Glial Cells during Aging and Age-Related Disorders

期刊

出版社

MDPI
DOI: 10.3390/ijms221910251

关键词

mitophagy; aging; neurodegeneration; Parkinson's disease; Alzheimer's disease

资金

  1. Russian Science Foundation [19-15-00320]
  2. Russian Science Foundation [19-15-00320] Funding Source: Russian Science Foundation

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Aging is associated with cognitive decline due to accumulated damage to brain cells, with mitophagy playing a crucial role in managing mitochondrial quality and quantity. Mitophagy defects contribute to aging and age-related diseases, highlighting potential therapeutic targets for neurodegenerative disorders.
Aging is associated with a decline in cognitive function, which can partly be explained by the accumulation of damage to the brain cells over time. Neurons and glia undergo morphological and ultrastructure changes during aging. Over the past several years, it has become evident that at the cellular level, various hallmarks of an aging brain are closely related to mitophagy. The importance of mitochondria quality and quantity control through mitophagy is highlighted by the contribution that defects in mitochondria-autophagy crosstalk make to aging and age-related diseases. In this review, we analyze some of the more recent findings regarding the study of brain aging and neurodegeneration in the context of mitophagy. We discuss the data on the dynamics of selective autophagy in neurons and glial cells during aging and in the course of neurodegeneration, focusing on three mechanisms of mitophagy: non-receptor-mediated mitophagy, receptor-mediated mitophagy, and transcellular mitophagy. We review the role of mitophagy in neuronal/glial homeostasis and in the molecular pathogenesis of neurodegenerative disorders, such as Parkinson's disease, Alzheimer's disease, and other disorders. Common mechanisms of aging and neurodegeneration that are related to different mitophagy pathways provide a number of promising targets for potential therapeutic agents.

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