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March 21, 2026Journal of Clinical Medicine3 citationsOpen Access

Overcoming Chemotherapy Resistance in Triple-Negative Breast Cancer with Nanocarrier-Delivered siRNA Therapeutics

ACAndreea CrinteaIBIoana Corina BocșanEJElena Mihaela Jianu

Key Points

  • The review aims to address the limitations of chemotherapy in triple-negative breast cancer by exploring the role of siRNA therapeutics delivered via nanocarriers.
  • Conducted a narrative review of studies in PubMed from database inception to August 2025.
  • Analyzed various nanocarrier systems including lipid, polymeric, inorganic, and hybrid types.
  • Evaluated the effectiveness of siRNA in reversing drug resistance mechanisms in TNBC models.
  • Nanocarriers achieved efficient target knockdown of resistance drivers in TNBC.
  • Significant enhancement of antitumor responses observed in resistant TNBC models.
  • Platforms reduced metastatic spread and improved survival in vivo.

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.

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Cite This Study

Crintea et al. (2026) studied this question.

synapsesocial.com/papers/69be37dd6e48c4981c677e1bhttps://doi.org/10.3390/jcm15062311
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