Related Experiment Video
Updated: Jun 21, 2025

Techniques to Induce and Quantify Cellular Senescence
Published on: May 1, 2017
Addition of Polyphenols to Drugs: The Potential of Controlling "Inflammaging" and Fibrosis in Human Senescent Lung
Maria Carolina Ximenes de Godoy1, Gabriela Arruda Monteiro1, Bárbara Hakim de Moraes1
1School for Life Sciences, Pontifical Catholic University of Campinas (PUC-Campinas), Av. John Boyd Dunlop, Campinas 13034-685, SP, Brazil.
Abstract:
The combination of a polyphenol, quercetin, with dasatinib initiated clinical trials to evaluate the safety and efficacy of senolytics in idiopathic pulmonary fibrosis, a lung disease associated with the presence of senescent cells. Another approach to senotherapeutics consists of controlling inflammation related to cellular senescence or "inflammaging", which participates, among other processes, in establishing pulmonary fibrosis. We evaluate whether polyphenols such as caffeic acid, chlorogenic acid, epicatechin, gallic acid, quercetin, or resveratrol combined with different senotherapeutics such as metformin or rapamycin, and antifibrotic drugs such as nintedanib or pirfenidone, could present beneficial actions in an in vitro model of senescent MRC-5 lung fibroblasts. A senescent-associated secretory phenotype (SASP) was evaluated by the measurement of interleukin (IL)-6, IL-8, and IL-1β. The senescent-associated β-galactosidase (SA-β-gal) activity and cellular proliferation were assessed. Fibrosis was evaluated using a Picrosirius red assay and the gene expression of fibrosis-related genes. Epithelial-mesenchymal transition (EMT) was assayed in the A549 cell line exposed to Transforming Growth Factor (TGF)-β in vitro. The combination that demonstrated the best results was metformin and caffeic acid, by inhibiting IL-6 and IL-8 in senescent MRC-5 cells. Metformin and caffeic acid also restore cellular proliferation and reduce SA-β-gal activity during senescence induction. The collagen production by senescent MRC-5 cells was inhibited by epicatechin alone or combined with drugs. Epicatechin and nintedanib were able to control EMT in A549 cells. In conclusion, caffeic acid and epicatechin can potentially increase the effectiveness of senotherapeutic drugs in controlling lung diseases whose pathophysiological component is the presence of senescent cells and fibrosis.
Insights
Caffeic acid and epicatechin show promise in enhancing senotherapeutic drugs for lung diseases. These compounds help control inflammation and fibrosis linked to cellular senescence, potentially improving treatment outcomes.
Area of Science:
- Pulmonary Medicine
- Cellular Biology
- Pharmacology
Background:
- Idiopathic pulmonary fibrosis (IPF) is linked to cellular senescence and associated inflammation (inflammaging).
- Senotherapeutics aim to clear senescent cells or mitigate their harmful effects.
- Polyphenols and existing drugs are being explored for their potential in managing fibrotic lung diseases.
Purpose of the Study:
- To investigate the efficacy of various polyphenols combined with senotherapeutic and antifibrotic drugs in an in vitro model of senescent lung fibroblasts.
- To assess the impact of these combinations on key markers of cellular senescence, inflammation, and fibrosis.
Main Methods:
- Senescent MRC-5 lung fibroblasts were treated with combinations of polyphenols (caffeic acid, epicatechin, etc.), senotherapeutics (metformin, rapamycin), and antifibrotic drugs (nintedanib, pirfenidone).
- Assays included measuring senescence-associated secretory phenotype (SASP) markers (IL-6, IL-8, IL-1β), SA-β-gal activity, cellular proliferation, collagen production, and epithelial-mesenchymal transition (EMT).
Main Results:
- Metformin combined with caffeic acid effectively inhibited IL-6 and IL-8, restored proliferation, and reduced SA-β-gal activity in senescent cells.
- Epicatechin alone or in combination inhibited collagen production by senescent cells.
- Epicatechin and nintedanib demonstrated efficacy in controlling TGF-β-induced EMT in A549 cells.
Conclusions:
- Caffeic acid and epicatechin show potential as adjuncts to senotherapeutic drugs for managing lung diseases characterized by cellular senescence and fibrosis.
- These polyphenols may enhance the effectiveness of current therapeutic strategies by targeting key fibrotic and inflammatory pathways.
More Related Videos
13:59A Quantitative Measurement of Reactive Oxygen Species and Senescence-associated Secretory Phenotype in Normal Human Fibroblasts During Oncogene-induced Senescence
Published on: August 12, 2018
12:00Extraction and Purification of Polyphenols from Freeze-dried Berry Powder for the Treatment of Vascular Smooth Muscle Cells In Vitro
Published on: July 5, 2017