A Mechanism‐Based Framework for Anti‐Aging Strategies: From Metabolic Regulation to Senotherapy and Stem Cell‐Based Interventions

The global prevalence of aging and age-related diseases has increased markedly in recent decades due to extended life expectancy and a growing aging population, posing substantial medical and social burdens. Multiple strategies, including metabolic modulation (e.g., physical exercise, calorie restriction, and calorie restriction mimetics), targeting inflammaging, senotherapy, parabiosis, stem cell-based therapies, and epigenetic rejuvenation, have shown promise in slowing aging and extending lifespan in preclinical models, with some demonstrating efficacy in clinical trials. This review summarizes the current status of leading anti-aging interventions, their clinical progress, and the underlying mechanisms, which include enhancing autophagy, clearing senescent cells and supporting mitochondrial function to reduce chronic inflammation. We propose that metabolic modulation, inflammaging control, and senotherapy constitute three interconnected pillars of contemporary anti-aging strategies.

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Publication Details

Journal
Aging Cell
Published
2026-08-27
DOI
https://doi.org/10.1111/acel.70658
Primary Topic
Telomeres, Telomerase, and Senescence
Type
article
Field-Weighted Citation Impact
0.00

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article

A Mechanism‐Based Framework for Anti‐Aging Strategies: From Metabolic Regulation to Senotherapy and Stem Cell‐Based Interventions

Gelin Wang, Yankai Wang, Jack Chen, Feifei Li et al.
Aging Cell
Telomeres, Telomerase, and Senescence
article

A Mechanism‐Based Framework for Anti‐Aging Strategies: From Metabolic Regulation to Senotherapy and Stem Cell‐Based Interventions

Gelin Wang, Yankai Wang, Jack Chen, Feifei Li, Song Huang
article en

Abstract

The global prevalence of aging and age-related diseases has increased markedly in recent decades due to extended life expectancy and a growing aging population, posing substantial medical and social burdens. Multiple strategies, including metabolic modulation (e.g., physical exercise, calorie restriction, and calorie restriction mimetics), targeting inflammaging, senotherapy, parabiosis, stem cell-based therapies, and epigenetic rejuvenation, have shown promise in slowing aging and extending lifespan in preclinical models, with some demonstrating efficacy in clinical trials. This review summarizes the current status of leading anti-aging interventions, their clinical progress, and the underlying mechanisms, which include enhancing autophagy, clearing senescent cells and supporting mitochondrial function to reduce chronic inflammation. We propose that metabolic modulation, inflammaging control, and senotherapy constitute three interconnected pillars of contemporary anti-aging strategies.

Aging CellVol. 25(9)
National Institute of Biological Sciences, Beijing (CN), Shanghai Ninth People's Hospital (CN), Ministry of Education (TH), Medical Technologies (Czechia) (CZ), Tsinghua University (CN)
Ministry of Science and Technology of the People's Republic of China, National Development and Reform Commission, National Health Commission of the People's Republic of China
Openalex Percentile: Top 11%
Telomeres, Telomerase, and Senescence
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