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Chronic kidney disease and aging: dissecting the p53/p21 pathway as a therapeutic target
Kavita Goyal1, Muhammad Afzal2, Abdulmalik Saleh Alfawaz Altamimi3
1Department of Biotechnology, Graphic Era (Deemed to Be University), Clement Town, Dehradun, 248002, India.
Abstract:
Chronic kidney diseases (CKD) are a group of multi-factorial disorders that markedly impair kidney functions with progressive renal deterioration. Aging contributes to age-specific phenotypes in kidneys, which undergo several structural and functional alterations, such as a decline in regenerative capacity and increased fibrosis, inflammation, and tubular atrophy, all predisposing them to disease and increasing their susceptibility to injury while impeding their recovery. A central feature of these age-related processes is the activation of the p53/p21 pathway signaling. The pathway is a key player in cellular senescence, apoptosis, and cell cycle regulation, which are all key to maintaining the health of the kidney. P53 is a transcription factor and a tumor suppressor protein that responds to cell stress and damage. Persistent activation of cell p53 can lead to the expression of p21, an inhibitor of the cell cycle known as a cyclin-dependent kinase. This causes cells to cease dividing and leads to senescence, where cells can no longer increase. The accumulation of senescent cells in the aging kidney impairs kidney function by altering the microenvironment. As the number of senescent cells increases, the capacity of the kidney to recover from injury decreases, accelerating the progression of end-stage renal disease. This article review extensively explores the relationship between the p53/p21 pathway and cellular senescence within an aging kidney and the emerging therapeutic strategies that target it to overcome the impacts of cellular senescence on CKD.
Insights
Aging kidneys exhibit increased cellular senescence, driven by the p53/p21 pathway. This senescence impairs kidney function and recovery, accelerating chronic kidney disease progression.
Area of Science:
- Nephrology
- Gerontology
- Molecular Biology
Background:
- Aging kidneys undergo structural and functional changes, including reduced regeneration and increased fibrosis.
- Cellular senescence, apoptosis, and cell cycle dysregulation are hallmarks of kidney aging.
- The p53/p21 pathway is central to age-related kidney alterations.
Purpose of the Study:
- To review the role of the p53/p21 pathway in kidney aging and cellular senescence.
- To explore how cellular senescence impacts kidney function and injury recovery.
- To discuss emerging therapeutic strategies targeting the p53/p21 pathway in chronic kidney disease (CKD).
Main Methods:
- Literature review of studies on kidney aging, cellular senescence, and the p53/p21 pathway.
- Analysis of the molecular mechanisms linking p53/p21 signaling to senescence.
- Examination of therapeutic interventions targeting senescence in the context of CKD.
Main Results:
- Persistent activation of the p53/p21 pathway leads to cellular senescence in aging kidneys.
- Accumulated senescent cells disrupt the kidney microenvironment, impairing function.
- Senescence exacerbates kidney injury susceptibility and hinders recovery, accelerating CKD progression.
Conclusions:
- The p53/p21 pathway is a critical mediator of cellular senescence in aging kidneys.
- Targeting this pathway offers potential therapeutic avenues for managing age-related CKD.
- Interventions aimed at mitigating senescence may improve kidney health in aging populations.
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