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April 22, 2026Biomedicines0 citationsOpen Access

Low-Dose Vitamin C-Based Electroporation of Solid Tumors: A New Area in Non-Cytotoxic Electrochemotherapy

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SYSeyed Mojtaba YazdanparastNMNavid ManoochehriMAMohammad Abdolahad

Key Points

  • This research aims to assess the potential of low-dose vitamin C combined with electroporation for enhancing cancer treatment efficacy.
  • Applied reversible electroporation using a custom-designed electrode system to treat tumors.
  • Conducted in vitro evaluations using MDA-MB-231 and 4T1 breast cancer cell lines.
  • Tested the approach in vivo using a 4T1 murine breast cancer model.
  • Low-dose vitamin C alone had minimal effects on cell viability.
  • Combining vitamin C with electroporation significantly reduced cell viability and increased cell death.
  • In vivo studies demonstrated tumor volume decrease to 0.34-fold of baseline, indicating effective growth suppression.

Abstract

Background: Electrochemotherapy enhances the intracellular delivery of anticancer agents through electroporation but is traditionally limited to cytotoxic drugs associated with significant side effects. Vitamin C (ascorbic acid) exhibits selective anticancer activity when accumulated at high intracellular concentrations; however, its therapeutic application is restricted by poor membrane permeability and rapid systemic clearance. Methods: In this study, we investigated whether reversible electroporation, applied using a custom-designed variable plate electrode system designed to deliver a uniform electric field, could potentiate the antitumor efficacy of low-dose vitamin C. Numerical simulations were performed to optimize electrode spacing and stimulation voltage, suggesting homogeneous electric field coverage throughout the tumor volume. The proposed approach was evaluated in vitro using MDA-MB-231 and 4T1 breast cancer cell lines and in vivo in a 4T1 murine breast cancer model. Results: Low-dose vitamin C alone produced minimal cytotoxic effects, whereas its combination with electroporation significantly reduced cell viability and increased apoptotic and necrotic cell death in vitro. In vivo, vitamin C–assisted electrochemotherapy resulted in pronounced tumor growth suppression, with tumor volumes reduced to approximately 0.34-fold of baseline by day 15, accompanied by decreased proliferation and marked tissue disruption. Conclusions: These findings demonstrate that uniform-field reversible electroporation markedly enhances the intracellular delivery and antitumor activity of low-dose vitamin C, supporting this technology-driven strategy as a promising, low-toxicity alternative to conventional chemotherapeutic agents in electrochemotherapy for solid tumors.

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Cite This Study

Yazdanparast et al. (2026) studied this question.

synapsesocial.com/papers/69e867356e0dea528ddeb909https://doi.org/10.3390/biomedicines14040936
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