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Status of Research on Sestrin2 and Prospects for its Application in Therapeutic Strategies Targeting Myocardial Aging
Gaoying Dai1, Meina Li2, He Xu3
1Department of Cardiovascular Center, The First Hospital of Jilin University, Changchun, China.
Abstract:
Cardiac aging is accompanied by changes in the heart at the cellular and molecular levels, leading to alterations in cardiac structure and function. Given today's increasingly aging population, the decline in cardiac function caused by cardiac aging has a significant impact on quality of life. Antiaging therapies to slow the aging process and attenuate changes in cardiac structure and function have become an important research topic. Treatment with drugs, including metformin, spermidine, rapamycin, resveratrol, astaxanthin, Huolisu oral liquid, and sulforaphane, has been demonstrated be effective in delaying cardiac aging by stimulating autophagy, delaying ventricular remodeling, and reducing oxidative stress and the inflammatory response. Furthermore, caloric restriction has been shown to play an important role in delaying aging of the heart. Many studies in cardiac aging and cardiac aging-related models have demonstrated that Sestrin2 has antioxidant and anti-inflammatory effects, stimulates autophagy, delays aging, regulates mitochondrial function, and inhibits myocardial remodeling by regulation of relevant signaling pathways. Therefore, Sestrin2 is likely to become an important target for antimyocardial aging therapy.
Insights
Cardiac aging impacts heart function, affecting quality of life. Therapies targeting Sestrin2 show promise in delaying heart aging by reducing oxidative stress and inflammation.
Area of Science:
- Cardiology
- Gerontology
- Molecular Biology
Background:
- Cardiac aging leads to structural and functional heart changes, impacting quality of life.
- The aging population necessitates research into anti-aging therapies for the heart.
- Existing interventions like caloric restriction and certain drugs show potential in mitigating cardiac aging.
Purpose of the Study:
- To explore the role of Sestrin2 in combating myocardial aging.
- To identify Sestrin2 as a potential therapeutic target for anti-aging interventions in the heart.
Main Methods:
- Review of existing studies on cardiac aging and related therapeutic interventions.
- Analysis of Sestrin2's molecular and cellular effects in cardiac aging models.
- Investigation of signaling pathways regulated by Sestrin2.
Main Results:
- Sestrin2 exhibits antioxidant and anti-inflammatory properties.
- Sestrin2 stimulates autophagy and delays cellular aging processes.
- Sestrin2 regulates mitochondrial function and inhibits myocardial remodeling.
Conclusions:
- Sestrin2 demonstrates significant potential as a therapeutic target for anti-myocardial aging.
- Targeting Sestrin2 may offer a novel strategy to improve cardiac health in aging populations.
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