Regeneration leads to global tissue rejuvenation in aging sexual planarians.

IF 17 Q1 CELL BIOLOGY
Xiaoting Dai, Xinghua Li, Alexander Tyshkovskiy, Cassandra Zuckerman, Nan Cheng, Peter Lin, David Paris, Saad Qureshi, Leonid Kruglyak, Xiaoming Mao, Jayakrishnan Nandakumar, Vadim N Gladyshev, Scott Pletcher, Jacob Sobota, Longhua Guo
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Abstract

The possibility of reversing the adverse impacts of aging could significantly reduce age-related diseases and improve quality of life in older populations. Here we report that the sexual lineage of the planarian Schmidtea mediterranea exhibits physiological decline within 18 months of birth, including altered tissue architecture, impaired fertility and motility, and increased oxidative stress. Single-cell profiling of young and older planarian heads uncovered loss of neurons and muscle, increase of glia, and revealed minimal changes in somatic pluripotent stem cells, along with molecular signatures of aging across tissues. Remarkably, amputation followed by regeneration of lost tissues in older planarians led to reversal of these age-associated changes in tissues both proximal and distal to the injury at physiological, cellular and molecular levels. Our work suggests mechanisms of rejuvenation in both new and old tissues concurring with planarian regeneration, which may provide valuable insights for antiaging interventions.

再生导致老龄性涡虫的整体组织年轻化。
扭转老龄化不利影响的可能性可以显著减少与年龄有关的疾病并改善老年人口的生活质量。在这里,我们报道了地中海施米德(Schmidtea mediterranea)涡虫的性谱系在出生后18个月内表现出生理衰退,包括组织结构改变、生育能力和运动能力受损以及氧化应激增加。对年轻和老年涡虫头部的单细胞分析揭示了神经元和肌肉的损失,神经胶质的增加,并揭示了体细胞多能干细胞的微小变化,以及组织衰老的分子特征。值得注意的是,老年涡虫截肢后丢失的组织再生导致损伤近端和远端组织在生理、细胞和分子水平上逆转这些与年龄相关的变化。我们的工作提示了涡虫再生过程中新旧组织的再生机制,这可能为抗衰老干预提供有价值的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
14.70
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