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Published on: June 13, 2014
Overcoming Chemotherapy Resistance in Triple-Negative Breast Cancer with Nanocarrier-Delivered siRNA Therapeutics
Andreea Crintea1, Corina I Bocșan2, Elena M Jianu3
1Medical Biochemistry, Department of Molecular Sciences, "Iuliu Haţieganu" University of Medicine and Pharmacy, 400349 Cluj-Napoca, Romania.
Abstract:
Triple-negative breast cancer (TNBC) represents 10-20% of breast cancers and is characterized by the absence of estrogen receptor, progesterone receptor, and human epidermal growth factor receptor 2 expression, leaving cytotoxic chemotherapy as the main systemic treatment. However, rapid development of resistance, via drug efflux, enhanced DNA repair, apoptosis evasion, epithelial-to-mesenchymal transition, and tumor microenvironment protection, limit long-term efficacy. Small interfering RNA (siRNA) therapeutics can silence key resistance drivers, but their clinical potential is hindered by instability, poor biodistribution, and off-target effects. Nanocarrier-based delivery systems offer solutions by protecting siRNA, enhancing tumor accumulation, enabling targeted intracellular release, and permitting co-delivery with chemotherapeutics for synergistic effects. We conducted a narrative review in PubMed from database inception to August 2025. The included studies demonstrated that lipid, polymeric, inorganic, and hybrid nanocarriers can achieve efficient target knockdown, reverse drug resistance mechanisms, and significantly enhance antitumor responses in resistant TNBC models. Several platforms also reduced metastatic spread and improved survival in vivo. While preclinical results are compelling, clinical translation remains limited by incomplete safety profiling and heterogeneity in delivery efficiency. This review synthesizes mechanistic insights and delivery innovations, outlining a roadmap for translating siRNA-loaded nanocarriers into effective therapies for chemoresistant TNBC.
Insights
Nanocarriers effectively deliver small interfering RNA (siRNA) to overcome chemoresistance in triple-negative breast cancer (TNBC). These advanced systems enhance drug efficacy and reduce metastasis, offering new hope for TNBC treatment.
Area of Science:
- Oncology
- Biotechnology
- Nanomedicine
Background:
- Triple-negative breast cancer (TNBC) lacks targeted therapies, relying on chemotherapy.
- Chemoresistance develops rapidly in TNBC due to multiple mechanisms.
- Small interfering RNA (siRNA) shows promise but faces delivery challenges.
Purpose of the Study:
- To review nanocarrier-based delivery systems for siRNA in chemoresistant TNBC.
- To synthesize mechanistic insights and delivery innovations.
- To outline a roadmap for clinical translation.
Main Methods:
- Conducted a narrative review of PubMed literature (inception to August 2025).
- Analyzed studies on various nanocarrier types (lipid, polymeric, inorganic, hybrid).
- Evaluated nanocarrier efficacy in preclinical TNBC models.
Main Results:
- Nanocarriers protect siRNA, enhance tumor targeting, and enable controlled release.
- Lipid, polymeric, inorganic, and hybrid nanocarriers demonstrated efficient target knockdown.
- These systems reversed drug resistance, boosted antitumor responses, reduced metastasis, and improved survival in vivo.
Conclusions:
- Nanocarrier-based siRNA delivery is a promising strategy for chemoresistant TNBC.
- Preclinical data show significant potential, but clinical translation requires further safety and efficiency evaluation.
- Further research is needed to optimize delivery systems for effective clinical application.
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