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首页> 外文期刊>Cell Reports >Aging Suppresses Skin-Derived Circulating SDF1 to Promote Full-Thickness Tissue Regeneration
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Aging Suppresses Skin-Derived Circulating SDF1 to Promote Full-Thickness Tissue Regeneration

机译:衰老抑制皮肤衍生的循环SDF1促进全层组织再生

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Summary Physicians have observed that surgical wounds in the elderly heal with thinner scars than wounds in young patients. Understanding this phenomenon may reveal strategies for promoting scarless wound repair. We show that full-thickness skin wounds in aged but not young mice fully regenerate. Exposure of aged animals to blood from young mice by parabiosis counteracts this regenerative capacity. The secreted factor, stromal-derived factor 1 (SDF1), is expressed at higher levels in wounded skin of young mice. Genetic deletion of SDF1 in young skin enhanced tissue regeneration. In aged mice, enhancer of zeste homolog 2 (EZH2) and histone H3 lysine 27 trimethylation are recruited to the SDF1 promoter at higher levels, and pharmacologic inhibition of EZH2 restores SDF1 induction and prevents tissue regeneration. Similar age-dependent EZH2-mediated SDF1 suppression occurs in human skin. Our findings counter the current dogma that tissue function invariably declines with age and suggest new therapeutic strategies in regenerative medicine.
机译:总结医师已经观察到,老年人的手术伤口比年轻患者的伤口愈合的疤痕更薄。了解这种现象可能会揭示促进无疤伤口修复的策略。我们显示,老年小鼠的全层皮肤伤口完全再生。通过共生关系将老年动物暴露于幼鼠的血液中可抵消这种再生能力。分泌因子基质衍生因子1(SDF1)在年轻小鼠的受伤皮肤中以较高的水平表达。年轻皮肤中SDF1的基因缺失增强了组织再生。在老年小鼠中,zeste同源物2(EZH2)和组蛋白H3赖氨酸27三甲基化的增强子被募集到更高的SDF1启动子上,并且对EZH2的药理抑制作用恢复了SDF1的诱导并阻止了组织再生。在人类皮肤中也会发生类似的年龄依赖性EZH2介导的SDF1抑制。我们的发现反驳了当前的教条,即组织功能会随着年龄的增长而不断下降,并提出了再生医学的新治疗策略。

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