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Cellular senescence in the aging and diseased kidney
F A Valentijn1, L L Falke1,2, T Q Nguyen1
1Department of Pathology, University Medical Center Utrecht, H04.312, Heidelberglaan 110, 3584, CX, Utrecht, The Netherlands.
Abstract:
The program of cellular senescence is involved in both the G1 and G2 phase of the cell cycle, limiting G1/S and G2/M progression respectively, and resulting in prolonged cell cycle arrest. Cellular senescence is involved in normal wound healing. However, multiple organs display increased senescent cell numbers both during natural aging and after injury, suggesting that senescent cells can have beneficial as well as detrimental effects in organismal aging and disease. Also in the kidney, senescent cells accumulate in various compartments with advancing age and renal disease. In experimental studies, forced apoptosis induction through the clearance of senescent cells leads to better preservation of kidney function during aging. Recent groundbreaking studies demonstrate that senescent cell depletion through INK-ATTAC transgene-mediated or cell-penetrating FOXO4-DRI peptide induced forced apoptosis, reduced age-associated damage and dysfunction in multiple organs, in particular the kidney, and increased performance and lifespan. Senescence is also involved in oncology and therapeutic depletion of senescent cells by senolytic drugs has been studied in experimental and human cancers. Although studies with senolytic drugs in models of kidney injury are lacking, their dose limiting side effects on other organs suggest that targeted delivery might be needed for successful application of senolytic drugs for treatment of kidney disease. In this review, we discuss (i) current understanding of the mechanisms and associated pathways of senescence, (ii) evidence of senescence occurrence and causality with organ injury, and (iii) therapeutic strategies for senescence depletion (senotherapy) including targeting, all in the context of renal aging and disease.
Insights
Cellular senescence, a cell cycle arrest, impacts aging and disease. Clearing senescent cells, particularly in the kidney, improves function and extends lifespan, offering therapeutic potential for age-related conditions.
Area of Science:
- Cellular and Molecular Biology
- Gerontology
- Nephrology
Background:
- Cellular senescence involves cell cycle arrest at G1/S and G2/M phases.
- Senescent cells accumulate with age and injury, exhibiting both beneficial and detrimental effects.
- Kidney aging and disease are associated with increased senescent cell burden.
Purpose of the Study:
- To review the mechanisms and pathways of cellular senescence.
- To examine the role of senescence in organ injury, specifically the kidney.
- To discuss senotherapy strategies for senescence depletion in renal aging and disease.
Main Methods:
- Review of current literature on cellular senescence mechanisms.
- Analysis of experimental studies demonstrating senescent cell clearance via apoptosis induction (e.g., INK-ATTAC, FOXO4-DRI).
- Examination of senolytic drug applications in cancer and potential for kidney disease.
Main Results:
- Forced apoptosis of senescent cells preserves kidney function during aging.
- Senescent cell depletion reduces age-associated damage in multiple organs, including the kidney, improving lifespan and performance.
- Senolytic drugs show promise but require targeted delivery for kidney applications due to side effects.
Conclusions:
- Senescence plays a complex role in aging and disease, with targeted clearance offering therapeutic benefits.
- Senotherapy, particularly senescent cell depletion, presents a promising strategy for mitigating age-related kidney damage and disease.
- Further research is needed on targeted senolytic drug delivery for effective kidney disease treatment.
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