Clearance of p16Ink4a-positive senescent cells delays ageing-associated disorders
Darren J Baker1, Tobias Wijshake, Tamar Tchkonia
1Department of Pediatric and Adolescent Medicine, Mayo Clinic College of Medicine, Rochester, Minnesota 55905, USA.
Abstract:
Advanced age is the main risk factor for most chronic diseases and functional deficits in humans, but the fundamental mechanisms that drive ageing remain largely unknown, impeding the development of interventions that might delay or prevent age-related disorders and maximize healthy lifespan. Cellular senescence, which halts the proliferation of damaged or dysfunctional cells, is an important mechanism to constrain the malignant progression of tumour cells. Senescent cells accumulate in various tissues and organs with ageing and have been hypothesized to disrupt tissue structure and function because of the components they secrete. However, whether senescent cells are causally implicated in age-related dysfunction and whether their removal is beneficial has remained unknown. To address these fundamental questions, we made use of a biomarker for senescence, p16(Ink4a), to design a novel transgene, INK-ATTAC, for inducible elimination of p16(Ink4a)-positive senescent cells upon administration of a drug. Here we show that in the BubR1 progeroid mouse background, INK-ATTAC removes p16(Ink4a)-positive senescent cells upon drug treatment. In tissues--such as adipose tissue, skeletal muscle and eye--in which p16(Ink4a) contributes to the acquisition of age-related pathologies, life-long removal of p16(Ink4a)-expressing cells delayed onset of these phenotypes. Furthermore, late-life clearance attenuated progression of already established age-related disorders. These data indicate that cellular senescence is causally implicated in generating age-related phenotypes and that removal of senescent cells can prevent or delay tissue dysfunction and extend healthspan.
Insights
Cellular senescence, a hallmark of aging, drives age-related diseases. Removing senescent cells (p16Ink4a-positive) in mice delays aging phenotypes and extends healthspan, indicating a causal role for senescence in aging.
Area of Science:
- Gerontology
- Cellular Biology
- Molecular Biology
Background:
- Advanced age is a primary risk factor for chronic diseases and functional decline.
- Cellular senescence, a state of irreversible cell cycle arrest, is implicated in aging.
- Senescent cells accumulate with age and may disrupt tissue function.
Purpose of the Study:
- To investigate the causal role of cellular senescence in age-related dysfunction.
- To determine if the removal of senescent cells can prevent or reverse aging phenotypes.
- To assess the therapeutic potential of targeting senescent cells for healthspan extension.
Main Methods:
- Developed a novel transgene (INK-ATTAC) for inducible elimination of p16Ink4a-positive senescent cells.
- Utilized a progeroid mouse model (BubR1) to test the INK-ATTAC system.
- Administered drug to induce clearance of senescent cells throughout life or in late life.
Main Results:
- INK-ATTAC successfully removed p16Ink4a-positive senescent cells in mice upon drug treatment.
- Life-long removal of senescent cells delayed age-related pathologies in tissues like adipose tissue, skeletal muscle, and the eye.
- Late-life clearance of senescent cells attenuated the progression of established age-related disorders.
Conclusions:
- Cellular senescence is causally involved in the development of age-related phenotypes.
- Targeted removal of senescent cells can prevent or delay age-related tissue dysfunction.
- Eliminating senescent cells holds promise for extending healthspan and mitigating age-related diseases.
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