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January 25, 2026International Journal of Molecular Sciences3 citationsOpen Access

TRPM2 Channel Involvement in the Hesperidin-Mediated Potentiation of Cisplatin’s Antitumor Action in Laryngeal Carcinoma Cells

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RÇRamazan ÇınarKYKenan YıldızhanHAHalil İbrahim Altıner

Key Points

  • This research aims to explore how hesperidin affects the efficacy of cisplatin in treating laryngeal carcinoma cells, focusing on TRPM2 channel involvement.
  • Human laryngeal carcinoma Hep-2 cells treated with cisplatin, hesperidin, or both for 24 hours.
  • Cell viability assessed post-treatment, measuring the effects of combination therapy.
  • Western blot analysis used to determine TRPM2 protein expression levels.
  • Reactive oxygen species and cell membrane integrity evaluated through biochemical assays.
  • Functional analyses conducted to assess calcium influx and mitochondrial potential.
  • Combination treatment reduced cell viability by around 50%, significantly more than cisplatin alone.
  • TRPM2 expression was notably higher in cells treated with both hesperidin and cisplatin.
  • Increased levels of reactive oxygen species and decreased cellular GSH observed with combination treatment.
  • Combination therapy resulted in increased pro-inflammatory cytokines like IL-1β and TNF-α.
  • Pharmacological inhibition of TRPM2 reversed effects, restoring cell function.

Abstract

Cisplatin (CSP) is a first-line chemotherapeutic for laryngeal squamous cell carcinoma (LSCC), but its clinical effectiveness is limited by resistance and toxicity. Hesperidin (HESP), a citrus flavonoid, may enhance chemotherapeutic efficacy through pro-apoptotic properties. This study investigated the involvement of the transient receptor potential melastatin-2 (TRPM2) channel in the HESP-mediated potentiation of CSP-induced cytotoxicity in human laryngeal carcinoma (Hep-2) cells. Hep-2 cells were treated with CSP (25 µM), HESP (25 µM), or their combination for 24 h. The findings showed that the combined application of HESP and CSP reduced cell viability by approximately 50% (p < 0.001), which was the lowest compared to CSP alone. Western blot analysis revealed that TRPM2 protein expression was higher in the CSP+HESP group compared to the control group (p < 0.001). This synergistic treatment resulted in an increase in ROS production and a decrease in MDA levels, accompanied by a reduction in cellular GSH levels (p < 0.001). Furthermore, the combination therapy increased pro-inflammatory cytokines such as IL-1β and TNF-α (p < 0.001). Functional analyses showed that HESP treatment enhanced CSP-induced Ca2+ influx and altered mitochondrial membrane potential (p < 0.001). The pharmacological inhibition of TRPM2 with ACA and 2-APB reversed these effects, restoring redox balance and reducing cellular damage. In conclusion, HESP amplifies CSP-induced apoptosis in Hep-2 cells through TRPM2-dependent oxidative stress, Ca2+ dysregulation, and mitochondrial dysfunction. These findings identify TRPM2 as a mechanistic mediator of HESP-enhanced chemosensitivity in LSCC.

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Cite This Study

Çınar et al. (2026) studied this question.

synapsesocial.com/papers/6975b350feba4585c2d6ecd1https://doi.org/10.3390/ijms27031141
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