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SA-β-Galactosidase-Based Screening Assay for the Identification of Senotherapeutic Drugs
Published on: June 28, 2019
Fisetin is a senotherapeutic that extends health and lifespan
Matthew J Yousefzadeh1, Yi Zhu2, Sara J McGowan1
1Department of Molecular Medicine and the Center on Aging, The Scripps Research Institute, 130 Scripps Way, Jupiter, FL 33458, United States.
Background:
Senescence is a tumor suppressor mechanism activated in stressed cells to prevent replication of damaged DNA. Senescent cells have been demonstrated to play a causal role in driving aging and age-related diseases using genetic and pharmacologic approaches. We previously demonstrated that the combination of dasatinib and the flavonoid quercetin is a potent senolytic improving numerous age-related conditions including frailty, osteoporosis and cardiovascular disease. The goal of this study was to identify flavonoids with more potent senolytic activity.
Methods:
A panel of flavonoid polyphenols was screened for senolytic activity using senescent murine and human fibroblasts, driven by oxidative and genotoxic stress, respectively. The top senotherapeutic flavonoid was tested in mice modeling a progeroid syndrome carrying a p16INK4a-luciferase reporter and aged wild-type mice to determine the effects of fisetin on senescence markers, age-related histopathology, disease markers, health span and lifespan. Human adipose tissue explants were used to determine if results translated.
Findings:
Of the 10 flavonoids tested, fisetin was the most potent senolytic. Acute or intermittent treatment of progeroid and old mice with fisetin reduced senescence markers in multiple tissues, consistent with a hit-and-run senolytic mechanism. Fisetin reduced senescence in a subset of cells in murine and human adipose tissue, demonstrating cell-type specificity. Administration of fisetin to wild-type mice late in life restored tissue homeostasis, reduced age-related pathology, and extended median and maximum lifespan.
Interpretation:
The natural product fisetin has senotherapeutic activity in mice and in human tissues. Late life intervention was sufficient to yield a potent health benefit. These characteristics suggest the feasibility to translation to human clinical studies. FUND: NIH grants P01 AG043376 (PDR, LJN), U19 AG056278 (PDR, LJN, WLL), R24 AG047115 (WLL), R37 AG013925 (JLK), R21 AG047984 (JLK), P30 DK050456 (Adipocyte Subcore, JLK), a Glenn Foundation/American Federation for Aging Research (AFAR) BIG Award (JLK), Glenn/AFAR (LJN, CEB), the Ted Nash Long Life and Noaber Foundations (JLK), the Connor Group (JLK), Robert J. and Theresa W. Ryan (JLK), and a Minnesota Partnership Grant (AMAY-UMN#99)-P004610401-1 (JLK, EAA).
Insights
The natural compound fisetin effectively clears senescent cells, improving healthspan and lifespan in mice. This senotherapeutic shows promise for human clinical studies in aging and age-related diseases.
Area of Science:
- Gerontology and Cellular Aging
- Natural Product Therapeutics
- Molecular Biology of Aging
Background:
- Cellular senescence is a key driver of aging and age-related diseases.
- Senescent cells contribute to frailty, osteoporosis, and cardiovascular disease.
- Previous research identified dasatinib and quercetin as senolytics.
Purpose of the Study:
- To identify novel flavonoids with potent senolytic activity.
- To evaluate the senotherapeutic potential of fisetin.
- To assess fisetin's effects on aging markers and healthspan.
Main Methods:
- Screening of flavonoid polyphenols for senolytic activity in stressed murine and human fibroblasts.
- Testing fisetin in mouse models of progeroid syndrome and aged wild-type mice.
- Analysis of senescence markers, histopathology, and lifespan in treated mice; human adipose tissue explants used for translational assessment.
Main Results:
- Fisetin demonstrated the most potent senolytic activity among 10 tested flavonoids.
- Fisetin treatment reduced senescence markers in multiple tissues via a hit-and-run mechanism.
- Fisetin extended median and maximum lifespan in aged mice and restored tissue homeostasis.
Conclusions:
- The natural product fisetin exhibits senotherapeutic activity in mice and human tissues.
- Late-life fisetin intervention significantly improved healthspan.
- Fisetin's efficacy suggests potential for human clinical translation in aging research.
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