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从端粒与衰老到整合式长寿医学:重新定义延长健康寿命之路。

From telomeres and senescence to integrated longevity medicine: redefining the path to extended healthspan.

作者信息

Boccardi Virginia

机构信息

Division of Gerontology and Geriatrics, Department of Medicine and Surgery, Santa Maria della Misericordia Hospital, University of Perugia, Piazzale Gambuli 1, 06132, Perugia, Italy.

出版信息

Biogerontology. 2025 May 5;26(3):107. doi: 10.1007/s10522-025-10246-7.

Abstract

Despite significant advances in aging research, translating these findings into clinical practice remains a challenge. Aging is a complex, multifactorial process shaped by many factors including genetic, metabolic, and environmental factors. While medical advancements have extended lifespan, healthspan remains constrained by cellular senescence, telomere attrition, and systemic inflammation-core hallmarks of biological aging. However, emerging evidence suggests that telomere dynamic is not inevitable but can be influenced by oxidative stress, lifestyle choices, and metabolic regulation. This review examines how telomere-based biomarkers and metabolic interventions can drive personalized longevity medicine, enabling targeted strategies to delay aging. Furthermore, it highlights the integration of geroscience into clinical practice-integrated longevity medicine leveraging biomarker tracking, metabolic therapies, and preventive interventions-to redefine aging as a modifiable process, ultimately extending both lifespan and healthspan.

摘要

尽管衰老研究取得了重大进展,但将这些发现转化为临床实践仍然是一项挑战。衰老是一个复杂的多因素过程,受许多因素影响,包括遗传、代谢和环境因素。虽然医学进步延长了寿命,但健康寿命仍然受到细胞衰老、端粒磨损和全身炎症等生物衰老的核心特征的限制。然而,新出现的证据表明,端粒动态并非不可避免,而是可以受到氧化应激、生活方式选择和代谢调节的影响。本综述探讨了基于端粒的生物标志物和代谢干预如何推动个性化长寿医学,实现延缓衰老的靶向策略。此外,它强调了老年科学与临床实践的整合——整合长寿医学利用生物标志物追踪、代谢疗法和预防性干预措施,将衰老重新定义为一个可改变的过程,最终延长寿命和健康寿命。

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