Li Qianyi, Wang Zhenzhen, Shi Nuo, Qi Yang, Yao Wenfei, Yu Jie, Lu Yiming
Department of Emergency Ruijin Hospital Shanghai Jiao Tong University School of Medicine Shanghai China.
Pôle Sino-Français de Recherches en Sciences du Vivant et G´enomique Shanghai China.
Smart Med. 2023 Dec 21;2(4):e20230030. doi: 10.1002/SMMD.20230030. eCollection 2023 Nov.
Complete regeneration of damaged tissues/organs has always been the ultimate challenge in regenerative medicine. Aging has long been considered the basis of age-related diseases, as senescent cells gradually accumulate in tissues with increasing age, tissues exhibit aging and normal physiological functions are inhibited. In recent years, in damaged tissues, scholars have found that the number of cells with features of cellular senescence continues to increase over time. The accumulation of senescent cells severely hinders the healing of damaged tissues. Furthermore, by clearing senescent cells or inhibiting the aging microenvironment, damaged tissues regained their original regenerative and repair capabilities. On the other hand, various biomaterials have been proved to have good biocompatibility and can effectively support cell regeneration after injury. Combining the two solutions, inhibiting the cellular senescence in damaged tissues and establishing a pro-regenerative environment through biomaterial technology gradually reveals a new, unexpected treatment strategy applied to the field of regenerative medicine. In this review, we first elucidate the main characteristics of senescent cells from morphological, functional and molecular levels, and discuss in detail the process of accumulation of senescent cells in tissues. Then, we will explore in depth how the accumulation of senescent cells after damage affects tissue repair and regeneration at different stages. Finally, we will turn to how to promote tissue regeneration and repair in the field of regenerative medicine by inhibiting cellular senescence combined with biomaterial technology. Our goal is to understand the relationship between cellular senescence and tissue regeneration through this new perspective, and provide valuable references for the development of new therapeutic strategies in the future.
受损组织/器官的完全再生一直是再生医学中的终极挑战。长期以来,衰老一直被认为是与年龄相关疾病的基础,随着年龄的增长,衰老细胞在组织中逐渐积累,组织呈现衰老状态,正常生理功能受到抑制。近年来,在受损组织中,学者们发现具有细胞衰老特征的细胞数量会随着时间的推移持续增加。衰老细胞的积累严重阻碍了受损组织的愈合。此外,通过清除衰老细胞或抑制衰老微环境,受损组织恢复了其原有的再生和修复能力。另一方面,各种生物材料已被证明具有良好的生物相容性,并且能够在损伤后有效支持细胞再生。将这两种方法结合起来,抑制受损组织中的细胞衰老,并通过生物材料技术建立一个促进再生的环境,逐渐揭示了一种应用于再生医学领域的全新且出人意料的治疗策略。在这篇综述中,我们首先从形态、功能和分子水平阐明衰老细胞的主要特征,并详细讨论衰老细胞在组织中的积累过程。然后,我们将深入探讨损伤后衰老细胞的积累如何在不同阶段影响组织修复和再生。最后,我们将转向如何通过结合生物材料技术抑制细胞衰老来促进再生医学领域的组织再生和修复。我们的目标是通过这个新视角理解细胞衰老与组织再生之间的关系,并为未来新治疗策略的开发提供有价值的参考。