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.
Abstract:
Strategies to overcome toxicity and drug resistance caused by chemotherapeutic drugs for targeted therapy against hepatocellular carcinoma (HCC) are urgently needed. Previous studies revealed that high oxidored-nitro domain-containing protein 1(NOR1) expression in HCC was associated with cisplatin (DDP) resistance. Herein, a novel dual-targeting nanocarrier system AR-NADR was generated for the treatment of DDP resistance in HCC. The core of the nanocarrier system is the metal-organic frameworks (MOF) modified with nuclear location sequence (NLS), which loading with DDP and NOR1 shRNA (R). The shell is an A54 peptide inserted into the erythrocyte membrane (AR). Our results show that AR-NADR efficiently internalized by tumor cells due to its specific binding to the A54 receptors that are abundantly expressed on the surface of HCC cells and NLS peptide-mediated nuclear entry. Additionally, DDP is more likely to be released due to the degradation of Ag-MOF in the acidic tumor microenvironment. Moreover, by acting as a vector for gene delivery, AR-NADR effectively inhibits tumor drug resistance by suppressing the expression of NOR1, which induces intracellular DDP accumulation and makes cells sensitive to DDP. Finally, the anti-HCC efficacy and mechanisms of AR-NADR were systematically elucidated by a HepG2/DDP cell model as well as a tumor model. Therefore, AR-NADR constitutes a key strategy to achieve excellent gene silencing and antitumor efficacy, which provides effective gene therapy and precise treatment strategies for cisplatin resistance in HCC.
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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