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Updated: May 28, 2026

SA-β-Galactosidase-Based Screening Assay for the Identification of Senotherapeutic Drugs
Published on: June 28, 2019
Triple-Marker Screening of 20 Terpenes Identifies Candidate Modulators of Senescence-Associated Phenotypes in
Arthur José Pontes Oliveira de Almeida1,2,3, Larisse Virgolino da Silva Pontes2,4,5, Javanyr Frederico de Souza Júnior4
1Post-Graduate Program in Development and Technological Innovation in Medicines, Health Sciences Center, Federal University of Paraíba, Campus I, João Pessoa 58071-970, PB, Brazil.
Abstract:
Aging is a major risk factor for chronic diseases, including cardiovascular diseases. Endothelial cells (ECs) are particularly vulnerable to age-related stress, and endothelial senescence contributes to vascular aging. In the present study, we applied a triple-screening strategy to identify terpenes that modulate senescence-associated phenotypes in endothelial cells. Rat aortic endothelial cells (RAECs) were exposed to D-galactose to induce a senescence-associated phenotype, and 20 g/L was selected for subsequent experiments. Subsequently, twenty terpenes were tested at four concentrations (10-9, 10-8, 10-7, and 10-6 mol/L) using three phenotypic readouts: senescence-associated β-galactosidase (SA-β-Gal) activity, cell viability, and oxidative stress. The screening identified multiple terpenes that reduced SA-β-Gal activity and oxidative stress, while five compounds improved cell viability under D-galactose conditions. Among them, citral, terpinolene, and farnesol were the only compounds that showed concordant beneficial effects across the three screening endpoints at the same concentration. In addition, 1R-(-)-myrtenol and trans-caryophyllene showed lower SA-β-Gal activity and preferentially reduced cell viability in D-galactose-treated cells, warranting follow-up studies to determine whether they exhibit senolytic activity. Overall, these findings identify terpene candidates that modulate senescence-associated phenotypes in ECs and support further mechanistic studies to define their senescence-related actions and potential relevance for natural-product-based strategies targeting EC dysfunction.
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