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Published on: January 20, 2023
Identification of HSP90 inhibitors as a novel class of senolytics
Heike Fuhrmann-Stroissnigg1, Yuan Yuan Ling1, Jing Zhao1
1Department of Metabolism and Aging, The Scripps Research Institute, Jupiter, 33458, FL, USA.
Abstract:
Aging is the main risk factor for many chronic degenerative diseases and cancer. Increased senescent cell burden in various tissues is a major contributor to aging and age-related diseases. Recently, a new class of drugs termed senolytics were demonstrated to extending healthspan, reducing frailty and improving stem cell function in multiple murine models of aging. To identify novel and more optimal senotherapeutic drugs and combinations, we established a senescence associated β-galactosidase assay as a screening platform to rapidly identify drugs that specifically affect senescent cells. We used primary Ercc1 -/- murine embryonic fibroblasts with reduced DNA repair capacity, which senesce rapidly if grown at atmospheric oxygen. This platform was used to screen a small library of compounds that regulate autophagy, identifying two inhibitors of the HSP90 chaperone family as having significant senolytic activity in mouse and human cells. Treatment of Ercc1 -/∆ mice, a mouse model of a human progeroid syndrome, with the HSP90 inhibitor 17-DMAG extended healthspan, delayed the onset of several age-related symptoms and reduced p16INK4a expression. These results demonstrate the utility of our screening platform to identify senotherapeutic agents as well as identified HSP90 inhibitors as a promising new class of senolytic drugs.The accumulation of senescent cells is thought to contribute to the age-associated decline in tissue function. Here, the authors identify HSP90 inhibitors as a new class of senolytic compounds in an in vitro screening and show that administration of a HSP90 inhibitor reduces age-related symptoms in progeroid mice.
Insights
Researchers identified HSP90 inhibitors as a new class of senolytic drugs. These compounds clear senescent cells, extending healthspan and reducing age-related symptoms in mouse models, offering a promising therapeutic avenue for aging.
Area of Science:
- Cellular senescence
- Aging research
- Drug discovery
Background:
- Cellular senescence, characterized by increased senescent cell burden, is a major contributor to aging and age-related diseases.
- Senotherapeutic drugs, known as senolytics, have shown promise in extending healthspan and improving function in aging models.
- Novel drug discovery is crucial for identifying more effective senotherapeutic agents and combinations.
Purpose of the Study:
- To establish a screening platform for identifying drugs that specifically target senescent cells.
- To discover novel senolytic compounds and combinations.
- To evaluate the senolytic activity and therapeutic potential of identified compounds in cellular and animal models.
Main Methods:
- Development of a senescence-associated β-galactosidase assay for high-throughput screening.
- Screening of a compound library targeting autophagy regulators.
- Utilized primary Ercc1-/- murine embryonic fibroblasts and human cells for in vitro testing.
- Administered HSP90 inhibitor 17-DMAG to Ercc1-/∆ progeroid mice.
Main Results:
- Identified two HSP90 chaperone family inhibitors with significant senolytic activity in mouse and human senescent cells.
- HSP90 inhibitor treatment in Ercc1-/∆ mice extended healthspan and delayed age-related symptoms.
- Reduced p16INK4a expression in treated progeroid mice, indicating a decrease in senescent cells.
Conclusions:
- The developed screening platform is effective for identifying senotherapeutic agents.
- HSP90 inhibitors represent a promising new class of senolytic drugs.
- Targeting HSP90 offers a potential strategy for mitigating aging and age-related diseases.

