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SA-β-Galactosidase-Based Screening Assay for the Identification of Senotherapeutic Drugs
Published on: June 28, 2019
Targeting Senescent Cells as Therapy for CKD
Katie J Mylonas1, David A Ferenbach
1Centre for Inflammation Research, Institute for Regeneration and Repair, University of Edinburgh, Edinburgh, UK.
Abstract:
Senescent cells accumulate in the kidney with aging, after acute and chronic injuries, and are present in increased numbers in deteriorating kidney transplants. Senescent cells have undergone permanent cell cycle arrest and release many proinflammatory cytokines/chemokines and profibrotic factors: the senescence-associated secretory phenotype. Recent work from several groups including our own has shown that senescent cells play a causative role in progression of kidney disease. Experimental evidence also indicates that targeting senescent cells has potential to alter the renal regenerative response, reducing progressive fibrosis and improving functional recovery after injury. Research and clinical interest is focused on understanding how accumulating chronic senescent cells link acute injury to progressive fibrosis, dysfunction, and mortality in human CKD. In this review, we outline current protocols for the identification of how senescent cells are identified in vitro and in vivo . We discuss the proposed mechanisms of actions of first-generation senolytic and senomorphic agents, such as ABT-263 (navitoclax) which targets the BCL2 family of survival factors, and senomorphic agents such as metformin which targets aspects of the senescence-associated secretory phenotype. We also review that emerging technologies, such as nanocarriers, are now being developed to have safer delivery systems for senolytics, greater specificity, fewer off-target effects, and less toxicity. Other methods of senescent cell elimination being developed target various immune evasion tactics displayed by these cells. By understanding the role of senescence in kidney homeostasis and disease, developing new, targeted compounds and the tools to allow their efficacy to be charted noninvasively, it should become possible for senolytic treatments to move from the bench to bedside.
Insights
Senescent cells drive kidney disease progression. Targeting these cells with senolytics may improve kidney repair and function, offering new therapeutic avenues for chronic kidney disease patients.
Area of Science:
- Nephrology and Gerontology
- Cellular Biology and Aging
Background:
- Senescent cells, characterized by permanent cell cycle arrest, accumulate in aging and injured kidneys, including failing transplants.
- These cells secrete pro-inflammatory and pro-fibrotic factors, contributing to kidney disease progression and dysfunction.
- Chronic accumulation of senescent cells links acute kidney injury to progressive fibrosis and mortality in chronic kidney disease (CKD).
Approach:
- Review of current protocols for identifying senescent cells in vitro and in vivo.
- Discussion of mechanisms of action for first-generation senolytic (e.g., ABT-263) and senomorphic (e.g., metformin) agents.
- Exploration of emerging technologies, including nanocarriers for targeted senolytic delivery and immune-based elimination strategies.
Key Points:
- Senescent cells play a causative role in the progression of kidney disease.
- Targeting senescent cells can potentially enhance renal regeneration, reduce fibrosis, and improve functional recovery post-injury.
- Research is focused on understanding the link between senescent cells and CKD progression, dysfunction, and mortality.
Conclusions:
- Developing targeted senolytic compounds and non-invasive monitoring tools is crucial for clinical translation.
- Senolytic treatments hold promise for moving from preclinical research to effective bedside therapies for kidney diseases.
- Understanding senescence in kidney homeostasis and disease paves the way for novel therapeutic interventions.
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