The School of Medicine, Nankai University, Tianjin, China.
Haihe Laboratory of Cell Ecosystem, Department of Geriatrics, Tianjin Medical University General Hospital, Tianjin, China.
Aging Dis. 2023 Nov 29;15(6):2595-2631. doi: 10.14336/AD.2023.1128.
Aging has emerged at the forefront of scientific research due to the growing social and economic costs associated with the growing aging global population. The defining features of aging involve a variety of molecular processes and cellular systems, which are interconnected and collaboratively contribute to the aging process. Herein, we analyze how telomere dysfunction potentially amplifies or accelerates the molecular and biochemical mechanisms underpinning each feature of aging and contributes to the emergence of age-associated illnesses, including cancer and neurodegeneration, via the perspective of telomere biology. Furthermore, the recently identified novel mechanistic actions for telomere maintenance offer a fresh viewpoint and approach to the management of telomeres and associated disorders. Telomeres and the defining features of aging are intimately related, which has implications for therapeutic and preventive approaches to slow aging and reduce the prevalence of age-related disorders.
由于与全球人口老龄化相关的社会和经济成本不断增加,衰老已成为科学研究的前沿领域。衰老的特征涉及多种分子过程和细胞系统,这些过程和系统相互关联并协同作用,导致衰老过程的发生。在此,我们从端粒生物学的角度分析端粒功能障碍如何潜在地放大或加速衰老的分子和生化机制,并导致与年龄相关的疾病的出现,包括癌症和神经退行性疾病。此外,最近发现的端粒维持的新机制作用为端粒和相关疾病的管理提供了新的观点和方法。端粒与衰老的特征密切相关,这对延缓衰老和减少与年龄相关的疾病的流行的治疗和预防方法具有重要意义。