Related Experiment Video
Updated: Oct 16, 2025

SA-β-Galactosidase-Based Screening Assay for the Identification of Senotherapeutic Drugs
Published on: June 28, 2019
Prospective Selective Mechanism of Emerging Senolytic Agents Derived from Flavonoids
Yijun Wang1, Yufeng He1, Margaret P Rayman2
1State Key Laboratory of Tea Plant Biology and Utilization, School of Tea & Food Science, Anhui Agricultural University, Hefei, Anhui 230036, People's Republic of China.
Abstract:
Senescent cells (SCs) are associated with the onset and development of multiple chronic diseases. Selective clearance of SCs by senolytic drugs is a potential therapeutic option for a number of age-related diseases. Among senolytic candidates, only dasatinib with quercetin and fisetin meet the rigorous criteria for senolytic drugs, according to a modified version of Koch's postulates. It is astonishing that two of the three agents, i.e., quercetin and fisetin, are flavonoids, although the mechanism by which they preferentially eliminate SCs is unclear. Herein, we propose a possible selective mechanism; prooxidant activities of quercetin or fisetin are inevitably involved in killing apoptosis-resistant SCs. Among the dietary flavonoids, quercetin is a potent redox-active flavonoid with strong prooxidant activities, and transition metals, such as copper and iron, hugely amplify its prooxidant activities. Fisetin, which has higher senolytic activities than quercetin, has higher prooxidant effects than quercetin in the absence or presence of copper. It appears that the prooxidant activity of flavonoids is an important consideration for screening senolytics. SCs accumulate high levels of copper and iron, and the selective mechanism of quercetin or fisetin is probably associated with copper/iron-promoted oxidative damage in SCs. Copper and iron dramatically enhanced the prooxidant effects of the flavonoid, epigallocatechin-3-gallate, having shown a depletion effect on SCs in rats and high therapeutic efficacy in patients with idiopathic pulmonary fibrosis, largely caused by SCs. Further investigation to evaluate whether epigallocatechin-3-gallate is a senolytic drug, according to Koch's postulates, is warranted.
Insights
Senolytic drugs like quercetin and fisetin clear senescent cells (SCs) by promoting oxidative damage. This mechanism, amplified by metals like copper and iron, offers a new approach for age-related diseases.
Area of Science:
- Cellular senescence
- Aging research
- Pharmacology
Background:
- Senescent cells (SCs) contribute to chronic diseases.
- Senolytic drugs selectively eliminate SCs, offering therapeutic potential for aging.
- Quercetin and fisetin are promising senolytic candidates, but their mechanism is unclear.
Purpose of the Study:
- To propose a selective mechanism for senolytic flavonoids.
- To investigate the role of prooxidant activity in senescent cell clearance.
- To explore the influence of transition metals on flavonoid prooxidant effects.
Main Methods:
- Review of existing literature on senolytic drugs and flavonoids.
- Analysis of prooxidant activities of quercetin and fisetin.
- Investigation of metal-ion (copper, iron) amplification of flavonoid prooxidant effects.
Main Results:
- Quercetin and fisetin exhibit prooxidant activities crucial for eliminating apoptosis-resistant SCs.
- Transition metals, specifically copper and iron, significantly enhance the prooxidant effects of these flavonoids.
- Fisetin demonstrates higher senolytic and prooxidant activity compared to quercetin.
Conclusions:
- Flavonoid prooxidant activity is a key factor in senolytic drug screening.
- The selective killing of SCs by quercetin and fisetin likely involves metal-promoted oxidative damage.
- Epigallocatechin-3-gallate warrants further investigation as a potential senolytic agent.
More Related Videos
14:01Far-Red Fluorescent Senescence-Associated β-Galactosidase Probe for Identification and Enrichment of Senescent Tumor Cells by Flow Cytometry
Published on: September 13, 2022
09:50Biosynthesis of a Flavonol from a Flavanone by Establishing a One-pot Bienzymatic Cascade
Published on: August 14, 2019