小W
(2023-10-31 23:52):
#paper doi:10.1016/j.stem.2023.09.014 Decoding aging-dependent regenerative decline across tissues at single-cell resolution 本文主要讲述了衰老对组织损伤修复的的影响,作者构建了小鼠的八个不同组织损伤模型,对年轻和衰老小鼠的损伤前、修复开始、修复进展和修复消退四个阶段,进行单细胞转录组分析,绘画不同年纪、损伤修复阶段和组织独特和共享的基因特征和细胞特征。本文主要的两个观点:衰老和年轻小鼠在损伤修复时激活不同 MuSC 亚型的干细胞,衰老MuSC 亚型的干细胞具有较弱的分化能力;Arg1+ 巨噬细胞在各种组织的再生和修复中激增,衰老小鼠 Arg1+ 巨噬细胞受到削弱,其可能通过影响血管生成能力,,导致衰老个体损伤修复能力的衰退。
Decoding aging-dependent regenerative decline across tissues at single-cell resolution
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Abstract:
Regeneration across tissues and organs exhibits significant variation throughout the body and undergoes a progressive decline with age. To decode the relationships between aging and regenerative capacity, we conducted a comprehensive single-cell transcriptome analysis of regeneration in eight tissues from young and aged mice. We employed diverse analytical models to study tissue regeneration and unveiled the intricate cellular and molecular mechanisms underlying the attenuated regenerative processes observed in aged tissues. Specifically, we identified compromised stem cell mobility and inadequate angiogenesis as prominent contributors to this age-associated decline in regenerative capacity. Moreover, we discovered a unique subset of Arg1 macrophages that were activated in young tissues but suppressed in aged regenerating tissues, suggesting their important role in age-related immune response disparities during regeneration. This study provides a comprehensive single-cell resource for identifying potential targets for interventions aimed at enhancing regenerative outcomes in the aging population.
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