Epigenetic Mechanisms in Post-Stroke Neuronal Resilience and Survival Pathways
Yanwei Xia1, Xili Yan1, Yingdi Zhao2
1Graduate School of Wannan Medical University, 241002 Wuhu, Anhui, China; Department of Human Anatomy, School of Basic Medical Sciences, Wannan Medical University, 241002 Wuhu, Anhui, China.
None:
Ischemic stroke is a leading cause of permanent neurological disability worldwide, primarily driven by neuronal injury mechanisms such as excitotoxicity and oxidative stress. Consequently, understanding the molecular basis of post-ischemic neural repair has emerged as a critical focus in translational neuroscience. Accumulating evidence now points to a central orchestrator in this repair process: dynamic epigenetic regulation. This regulation, which encompasses mechanisms like DNA methylation/demethylation, histone modifications, non-coding RNA networks, and chromatin remodeling, modulates key repair pathways including neuroinflammation, axonal regeneration, and synaptic plasticity. In this context, the present review synthesizes current evidence on two fronts: first, how these epigenetic mechanisms regulate neuroinflammation and oxidative stress; and second, their specific roles in promoting neurogenesis and neuroplasticity after stroke. By integrating these insights, this review aims to provide a coherent theoretical foundation for the rational development of epigenetic-targeted therapeutic strategies to enhance functional recovery following stroke.
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