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具有单细胞分辨率的光激活衰老细胞清除可延缓衰老。

Photoactivatable senolysis with single-cell resolution delays aging.

作者信息

Shi Donglei, Liu Wenwen, Gao Ying, Li Xinming, Huang Yunyuan, Li Xiaokang, James Tony D, Guo Yuan, Li Jian

机构信息

State Key Laboratory of Bioreactor Engineering, Shanghai Frontiers Science Center of Optogenetic Techniques for Cell Metabolism, Frontiers Science Center for Materiobiology and Dynamic Chemistry, Shanghai Key Laboratory of New Drug Design, School of Pharmacy, East China University of Science and Technology, Shanghai, China.

Key Laboratory of Synthetic and Natural Functional Molecule of the Ministry of Education, College of Chemistry and Materials Science, Northwest University, Xi'an, China.

出版信息

Nat Aging. 2023 Mar;3(3):297-312. doi: 10.1038/s43587-023-00360-x. Epub 2023 Feb 2.

Abstract

Strategies that can selectively eliminate senescent cells (SnCs), namely senolytics, have been shown to promote healthy lifespan. However, it is challenging to achieve precise, broad-spectrum and tractable senolysis. Here, we integrate multiple technologies that combine the enzyme substrate of senescence-associated β-galactosidase (SA-β-gal) with fluorescence tag for the precise tracking of SnCs, construction of a bioorthogonal receptor triggered by SA-β-gal to target and anchor SnCs with single-cell resolution and incorporation of a selenium atom to generate singlet oxygen and achieve precise senolysis through controllable photodynamic therapy (PDT). We generate KSL0608-Se, a photosensitive senolytic prodrug, which is selectively activated by SA-β-gal. In naturally-aged mice, KSL0608-Se-mediated PDT prevented upregulation of age-related SnCs markers and senescence-associated secretory phenotype factors. This treatment also countered age-induced losses in liver and renal function and inhibited the age-associated physical dysfunction in mice. We therefore provide a strategy to monitor and selectively eliminate SnCs to regulate aging.

摘要

能够选择性清除衰老细胞(SnCs)的策略,即衰老细胞溶解剂,已被证明可促进健康寿命。然而,实现精确、广谱且易于处理的衰老细胞溶解具有挑战性。在此,我们整合了多种技术,将衰老相关β-半乳糖苷酶(SA-β-gal)的酶底物与荧光标签相结合,以精确追踪SnCs;构建由SA-β-gal触发的生物正交受体,以单细胞分辨率靶向并锚定SnCs;并入一个硒原子以产生活性单线态氧,并通过可控光动力疗法(PDT)实现精确的衰老细胞溶解。我们生成了KSL0608-Se,一种光敏衰老细胞溶解前药,它可被SA-β-gal选择性激活。在自然衰老的小鼠中,KSL0608-Se介导的PDT可防止与年龄相关的SnCs标志物和衰老相关分泌表型因子的上调。这种治疗还对抗了年龄诱导的肝肾功能丧失,并抑制了小鼠与年龄相关的身体功能障碍。因此,我们提供了一种监测和选择性清除SnCs以调节衰老的策略。

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