Combination therapy based on dual-target biomimetic nano-delivery system for overcoming cisplatin resistance in

Yufen Huang1, Qinjie Kou1, Yanrong Su1

  • 1Department of Laboratory Medicine, Third Xiangya Hospital, Central South University, Changsha, 410013, Hunan, China.

Insights

A novel nanocarrier, AR-NADR, overcomes cisplatin resistance in hepatocellular carcinoma (HCC) by delivering chemotherapy and NOR1 shRNA. This dual-targeting system enhances drug accumulation and restores sensitivity to chemotherapy in HCC tumors.

Area of Science:

  • Biomedical Engineering
  • Nanotechnology
  • Oncology

Background:

  • Hepatocellular carcinoma (HCC) poses challenges due to chemotherapy resistance.
  • High oxidored-nitro domain-containing protein 1 (NOR1) expression correlates with cisplatin (DDP) resistance in HCC.
  • Novel strategies are needed to overcome DDP resistance in HCC targeted therapy.

Purpose of the Study:

  • To develop and evaluate a dual-targeting nanocarrier system, AR-NADR, for overcoming DDP resistance in HCC.
  • To investigate the mechanism of AR-NADR in enhancing DDP sensitivity by suppressing NOR1 expression.

Main Methods:

  • Fabrication of AR-NADR: Metal-organic frameworks (MOF) loaded with DDP and NOR1 shRNA, modified with nuclear location sequence (NLS).
  • AR-NADR features an erythrocyte membrane shell (AR) with A54 peptide for targeted delivery.
  • Evaluation using HepG2/DDP cell models and tumor models to assess internalization, drug release, gene silencing, and anti-tumor efficacy.

Main Results:

  • AR-NADR demonstrated efficient internalization into HCC cells via A54 receptor binding and NLS-mediated nuclear entry.
  • Acidic tumor microenvironment facilitated DDP release from the Ag-MOF core.
  • AR-NADR effectively suppressed NOR1 expression, increasing intracellular DDP accumulation and restoring DDP sensitivity.
  • Significant anti-HCC efficacy was observed in both cell and tumor models.

Conclusions:

  • AR-NADR is a promising nanocarrier system for effective gene silencing and overcoming DDP resistance in HCC.
  • This strategy offers potential for targeted gene therapy and precise treatment of cisplatin-resistant HCC.

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