Repurposing the plant-derived compound apigenin for senomorphic effect in antiaging pipelines
Zhang, H.; Xu, Q.; Jiang, Z.; Sun, R.; Liu, S.; Kirkland, J. L.; Zhang, W.; Sun, Y.
Show abstract
Cellular senescence is a cell fate triggered by inherent or environmental stress and characterized by stable cell cycle arrest accompanied by a hypersecretory feature, termed as the senescence-associated secretory phenotype (SASP). Senescent cell burden increases with natural aging, functionally contributing to age-related organ dysfunction and multiple disorders. In this study, we performed a large scale screening of a natural product library for senotherapeutic candidates by assessing their effects on human senescent cells. Apigenin, a dietary flavonoid previously reported with antioxidant and anti-inflammatory activities, exhibited a prominent capacity in targeting senescent cells as a senomorphic agent. In senescent cells, apigenin blocks the interactions between ATM/p38 and HSPA8, thus preventing transition of the acute stress-associated phenotype (ASAP) towards the SASP. Mechanistically, apigenin targets peroxiredoxin 6 (PRDX6), an intracellular redox-active molecule, suppressing the iPLA2 activity of PRDX6 and disrupting downstream reactions underlying the SASP development. Without reversing cellular senescence, apigenin deprives cancer cells of malignancy acquired from senescent stromal cells in culture, while reducing chemoresistance upon combination with chemotherapy in anticancer regimens. In preclinical trials, apigenin administration improves physical function of animals prematurely aged after whole body irradiation, alleviating physical frailty and cognitive impairment. Overall, our study demonstrates the potential of exploiting a naturally derived compound with senomorphic capacity to achieve geroprotective effects by modulating the SASP, thus providing a research platform for future exploration of novel natural agents against age-related conditions.
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Heterogeneous metabolomic aging across the same age and prediction of health outcome 94%
- Gompertz law based biological age (GOLD BioAge): a simple and practical measurement of biological aging to capture morbidity and mortality risks 93%
- Human brain cell-type-specific aging clocks based on single-nuclei transcriptomics 93%
Similar papers in this journal
Similar papers in this journal
- Multi-omics characterization of partial chemical reprogramming reveals evidence of cell rejuvenation 96%
- Long-term Hematopoietic Transfer of the Anti-Cancer and Lifespan-Extending Capabilities of A Genetically Engineered Blood System by Transplantation of Bone Marrow Mononuclear Cells 95%
- Cystathionine-β-synthase is essential for AKT-induced senescence and suppresses the development of gastric cancers with PI3K/AKT activation 94%
Similar papers in this journal
- Rejuvenation of Senescent Cells by Low Frequency Ultrasound without Senolysis 96%
- Reduction of DNA Topoisomerase Top2 reprograms the epigenetic landscape and extends health and life span across species 95%
- Rapamycin Reverses the Hepatic Response to Diet-Induced Metabolic Stress That Is Amplified by Aging. 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.