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January 14, 2026Antioxidants0 citationsOpen Access

Molecular Insights into the Synergistic Anticancer and Oxidative Stress–Modulating Activity of Quercetin and Gemcitabine

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YAYasemin AfşinSASenem Alkan AkalınİÖİlhan Özdemir

Key Points

  • To explore the synergistic effects of quercetin and gemcitabine on cancer cell viability and oxidative stress modulation.
  • Examined the effects of quercetin and gemcitabine in MDA-MB-231 breast cancer cells
  • Measuring cell viability and apoptosis incidence
  • Analyzed reactive oxygen species, glutathione levels, and lipid peroxidation
  • Conducted molecular analysis on HIF-1α, Bax, and Caspase-3 expression
  • Performed transcriptomic and enrichment analyses of related pathways.
  • Combination treatment significantly reduced cell viability beyond expected Bliss value
  • Increased reactive oxygen species production linked to antioxidant defense depletion
  • Observation of apoptosis through increased Bax and Caspase-3 levels
  • Downregulation of HIF-1α and VEGF involved in cell survival
  • Identification of modulated pathways related to oxidative stress and apoptosis.

Abstract

Quercetin (Q), a bioactive flavonoid, exerts potent antioxidant and redox-modulating effects by activating the nuclear factor erythroid 2-related factor 2/antioxidant response Element (Nrf2/ARE) pathway and upregulating endogenous antioxidant defenses, including enzymatic antioxidants such as superoxide dismutase (SOD) and catalase (CAT), as well as non-enzymatic glutathione (GSH) and lipid peroxidation (MDA). Gemcitabine (Gem), a widely used antimetabolite chemotherapeutic, often shows limited efficacy under hypoxic and oxidative stress conditions driven by hypoxia-inducible factor 1-alpha (HIF-1α) and vascular endothelial growth factor (VEGF)-mediated angiogenesis. This study investigated the redox-mediated synergistic effects of Q and Gem in MDA-MB-231 human breast cancer cells. Combination treatment significantly reduced cell viability beyond the expected Bliss value, indicating a synergistic interaction and enhanced apoptosis compared with single-agent treatments. Increased reactive oxygen species (ROS) production was accompanied by depletion of GSH and accumulation of MDA, establishing a pro-apoptotic oxidative stress environment. Q alone enhanced SOD and CAT activities, whereas the combination induced exhaustion of antioxidant defenses under oxidative load, reflecting a redox-adaptive response. Molecular analyses revealed downregulation of HIF-1α and VEGF, alongside upregulation of Bax and Caspase-3, confirming suppression of hypoxia-driven survival and activation of the intrinsic apoptotic pathway. Transcriptomic and enrichment analyses further identified modulation of oxidative stress- and apoptosis-related pathways, including phosphoinositide-3-kinase–protein kinase B/Akt (PI3K/Akt), HIF-1 and VEGF signaling. Collectively, these results indicate that Q potentiates Gem cytotoxicity via redox modulation, promoting controlled ROS elevation and apoptosis while suppressing hypoxia-induced survival mechanisms, highlighting the therapeutic potential of redox-based combination strategies against chemoresistant breast cancer.

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Cite This Study

Afşin et al. (2026) studied this question.

synapsesocial.com/papers/6966e70e13bf7a6f02bff506https://doi.org/10.3390/antiox15010091
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Curcumin Enhances Gemcitabine Sensitivity in Breast Cancer Cells Through ROS-Associated Mitochondrial Apoptosis and Transcriptional Reprogramming2026
  2. 2Synergistic Effects of Doxorubicin and Quercetin on ROS-Associated Apoptosis and EGFR/FOXP3 Modulation in OVCAR3 Cells2026
  3. 3Quercetin Sensitizes Retinoblastoma Cells to Mitomycin C Through Transcriptional Modulation of p53-Regulated Apoptotic Genes: A Preclinical Study2026
  4. 4Quercetin Enhances Topotecan Cytotoxicity in Retinoblastoma Cells Through ROS-Associated Stress and Apoptotic Signaling2026
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