Natural Compounds and Electroporation in Oncology: Synergistic Approaches for Enhanced Cancer Therapy

This review explores the emerging integration of natural agents with electroporation (EP) techniques in oncology. Natural compounds derived from plants, microbes, and marine organisms hold promise for cancer treatment due to their multifaceted mechanisms of action, including apoptosis induction and inhibition of tumor progression. EP, a method that enhances cell membrane permeability, facilitates the efficient intracellular delivery of these bioactive compounds. This synergistic approach has demonstrated significant efficacy in preclinical studies and is progressing toward clinical application, particularly for cancers resistant to conventional therapies. We provide an in-depth analysis of this innovative therapeutic strategy’s mechanisms, preclinical evidence, and clinical progress, highlighting its potential to transform cancer treatment paradigms. Future research directions are proposed to optimize and personalize these integrative therapies.

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Publication Details

Journal
Bioelectricity
Published
2026-08-27
DOI
https://doi.org/10.1177/25763113261484246
Primary Topic
Microbial Inactivation Methods
Type
article
Field-Weighted Citation Impact
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article

Natural Compounds and Electroporation in Oncology: Synergistic Approaches for Enhanced Cancer Therapy

Julita Kulbacka, Çağla Zübeyde Köprü, Dilek Yonar, Burcu Baba et al.
Bioelectricity
Microbial Inactivation Methods
article

Natural Compounds and Electroporation in Oncology: Synergistic Approaches for Enhanced Cancer Therapy

Julita Kulbacka, Çağla Zübeyde Köprü, Dilek Yonar, Burcu Baba, Anna Choromańska, Urszula Ciesielska
article en

Abstract

This review explores the emerging integration of natural agents with electroporation (EP) techniques in oncology. Natural compounds derived from plants, microbes, and marine organisms hold promise for cancer treatment due to their multifaceted mechanisms of action, including apoptosis induction and inhibition of tumor progression. EP, a method that enhances cell membrane permeability, facilitates the efficient intracellular delivery of these bioactive compounds. This synergistic approach has demonstrated significant efficacy in preclinical studies and is progressing toward clinical application, particularly for cancers resistant to conventional therapies. We provide an in-depth analysis of this innovative therapeutic strategy’s mechanisms, preclinical evidence, and clinical progress, highlighting its potential to transform cancer treatment paradigms. Future research directions are proposed to optimize and personalize these integrative therapies.

Bioelectricity
Wroclaw Medical University (PL), State Research Institute Centre for Innovative Medicine (LT), Yüksek İhtisas Üniversitesi (TR)
Life below water
Openalex Percentile: Top 15%
Microbial Inactivation Methods
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