Myelin dysfunction in aging and brain disorders: mechanisms and therapeutic opportunities

Нарушение функции миелина при старении и заболеваниях головного мозга: механизмы и терапевтические возможности
Zhihai Huang, Yulan Zhang, Peibin Zou, Xuemei Zong, Quanguang Zhang
2025-06-15

adaptive myelinationcognitive declinemyelin dysfunctionpro-myelinating compoundsremyelination therapies
Myelin is a multilamellar membrane that surrounds axons in the vertebrate nervous system. Properly functioning myelin is essential for the rapid conduction of nerve impulses, and it metabolically supports axonal integrity. Emerging evidence indicates that myelin is also involved in various aspects of cognition, with adaptive myelination playing a critical role in memory consolidation and motor learning. However, these physiological processes can be disrupted in various diseases. Understanding the mechanisms underlying myelin pathology is therefore essential for the development of targeted therapies for associated medical conditions. This review provides a comprehensive overview of the role of myelin in neural function, with a particular focus on adaptive myelination in cognition. We also highlight myelin dysfunction and the underlying mechanisms in the aging brain, as well as in diverse brain disorders and neurological conditions, including neurodegenerative diseases, psychiatric conditions, brain injuries, chemotherapy-related cognitive impairment, and neurological symptoms associated with COVID-19. Furthermore, we discuss the therapeutic potential of recently identified pro-myelinating compounds in aging-associated cognitive decline and brain disorders, as well as the future of remyelination therapies. Current evidence suggests that restoring functional myelin may serve as a therapeutic strategy for various medical conditions associated with myelin dysfunction.
1
Adaptive myelination contributes to cognition by supporting memory consolidation and motor learning.
2
Myelin dysfunction occurs during brain aging and across neurodegenerative, psychiatric, traumatic, chemotherapy-related, and COVID-19-associated neurological conditions.
3
Myelin enables rapid nerve conduction and metabolically supports axonal integrity throughout the vertebrate nervous system.
4
Pro-myelinating compounds and future remyelination strategies may restore functional myelin and treat cognitive decline and other conditions associated with myelin dysfunction.
5
The review synthesizes mechanisms underlying myelin pathology across aging and diverse brain disorders, emphasizing their relevance for targeted therapy development.

Myelin in the aging brain and in brain disorders and neurological conditions

Myelin dysfunction, its mechanisms, effects on neural function and cognition, and therapeutic restoration through pro-myelinating and remyelination strategies

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2025-06-15
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Zhihai Huang
Yulan Zhang
Peibin Zou
Xuemei Zong
Quanguang Zhang
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