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SIRT3-dependent mitochondrial redox homeostasis protects against age-related tendon degeneration
Yiqiong Nie1,2, Jiefu Zhou1, Xueying Zhang1,3
1Department of Sports Medicine, Xiangya Hospital, Key Laboratory of Organ Injury, Aging and Regenerative Medicine of Hunan Province, Hunan Engineering Research Center of Sports and Health, Xiangya Hospital-International Chinese Musculoskeletal Research Society Sports Medicine Research Centre, National Clinical Research Center for Geriatric Disorders, Central South University, Changsha, China.
Aims:
Mitochondrial redox homeostasis is closely linked to the ageing processes of tendons, whether in normal or pathological conditions. This study employed an innovative approach to examine the role of sirtuin 3 (SIRT3) in mitochondrial dysfunction in the aged murine supraspinatus tendon (ST).
Methods:
Pathological changes and collagen organization in tendons, along with variations in SIRT3 levels and oxidative stress, were initially assessed in mice of different ages. In vitro experiments were then performed to evaluate the effects of oxidative senescence on tendon cells, including cellular activity, phenotype, and collagen secretion. Finally, we explored the underlying mechanisms via which SIRT3 regulates mitochondrial redox homeostasis.
Results:
Histological and immunofluorescence analyses revealed a decline in SIRT3 levels within tenocytes as ageing progressed, accompanied by mitochondrial dysfunction and ageing-related phenotypes. The reduction in SIRT3 with age led to an increase in reactive oxygen species levels in tendon cells. However, enhancing SIRT3 expression in cells under oxidative stress was found to activate the SOD2 and Keap1/Nrf2/HO-1 signalling pathways, effectively reversing cellular senescence.
Conclusion:
SIRT3 plays a pivotal role in maintaining mitochondrial redox homeostasis in ST by regulating the mitochondrial antioxidant network to mitigate ageing and oxidative stress in tendon cells. Targeting SIRT3 in ST degeneration may offer a promising therapeutic approach.
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