重编程
英语
神经科学
生物
认知
即刻早期基因
神经发生
心理学
再生(生物学)
细胞命运测定
后生
认知功能衰退
环境富集
转录组
细胞
电池类型
海马体
神经可塑性
自适应存储器
疾病
作者
Gabriel Berdugo-Vega,Cèsar Sierra,Simone Astori,Veronika Calati,Jules Orsat,Marianne Julie Scoglio,Carmen Sandi,Johannes Gräff
出处
期刊:Neuron
[Cell Press]
日期:2026-02-10
卷期号:114 (6): 1102-1116.e7
被引量:3
标识
DOI:10.1016/j.neuron.2025.11.028
摘要
Counteracting cognitive decline is a declared goal of regenerative medicine. Recently, partial cellular reprogramming has emerged as a promising strategy to promote tissue regeneration and restore cellular function, but whether this approach bears fruit when targeted to cell populations underlying cognitive processes remains unknown. Here, we report that partial reprogramming of engram neurons-bona fide memory trace cells-by OSK-mediated gene therapy reversed the expression of senescence- and disease-related cellular hallmarks in aged mice and models of Alzheimer's disease (AD), re-established aberrant epigenetic-transcriptional patterns pertaining to synaptic plasticity, and counteracted AD-typical neuronal hyperexcitability. Importantly, irrespective of the brain area targeted or the behavioral paradigm employed, engram reprogramming also recovered learning and memory capacities to levels of healthy young animals, suggesting cognitive rejuvenation. These results posit that partial reprogramming of specific cell populations in the brain can be exploited for cognitive restoration in aging and disease.
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