Long-term effects of s-KL treatment in wild-type mice: enhancing longevity, physical well-being, and neurological resilience

长寿 期限(时间) 弹性(材料科学) 生物 幸福 医学 老年学 心理学 遗传学 心理治疗师 量子力学 热力学 物理
作者
Joan Roig-Soriano,Ángel Edo,Sergi Verdés,Carlos Martín-Alonso,Cristina Sánchez‐de‐Diego,Laura Rodríguez-Estévez,Antonio L. Serrano,Carmela R. Abraham,Assumpció Bosch,Francesc Ventura,B. Jordan,Pura Muñoz-Cánoves,Miguel Chillón
出处
期刊:Molecular Therapy [Elsevier BV]
被引量:3
标识
DOI:10.1016/j.ymthe.2025.02.030
摘要

Aging is a major risk factors for pathologies including sarcopenia, osteoporosis, and cognitive decline, which bring suffering, disability, and elevated economic and social costs. Therefore, new therapies are needed to achieve healthy aging. The protein Klotho (KL) has emerged as a promising anti-aging molecule due to its pleiotropic actions modulating insulin/IGF-1 and Wnt signaling pathways and reducing inflammatory and oxidative stress. Here, we explored the anti-aging potential of the secreted isoform of this protein on the non-pathological aging progression of wild-type mice. The delivery of an AAV9 coding for s-KL efficiently increased the concentration of s-KL in serum, resulting in a 20% increase in lifespan. Notably, KL treatment improved physical fitness, related to a reduction in muscle fibrosis and an increase in muscular regenerative capacity. KL treatment also improved bone microstructural parameters associated with osteoporosis. Finally, s-KL-treated mice exhibited increased cellular markers of adult neurogenesis and immune response, with transcriptomic analysis revealing induced phagocytosis and immune cell activity in the aged hippocampus. These results show the potential of elevating s-KL expression to simultaneously reduce the age-associated degeneration in multiple organs, increasing both life and health span.
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