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Manipulating immune system using nanoparticles for an effective cancer treatment: Combination of targeted therapy and
Hanh Thuy Nguyen1, Cao Dai Phung1, Tuan Hiep Tran2
1College of Pharmacy, Yeungnam University, Gyeongsan 38541, Republic of Korea.
Abstract:
Accumulating clinical data shows that less than half of patients are beneficial from PD-1/PD-L1 blockage therapy owing to the limited infiltration of effector immune cells into the tumor and abundant of the immunosuppressive factors in the tumor microenvironment. In this study, PD-L1 inhibition therapy and BRAF-targeted therapy, which showed clinical benefit, were combined in a CXCR4-targeted nanoparticle co-delivering dabrafenib (Dab), a BRAF inhibitor, and miR-200c which can down-regulate PD-L1 expression. The cationic PCL-PEI core containing Dab- and miR-200c- were coated with poly-L-glutamic acid conjugated with LY2510924, a CXCR-4 antagonist peptide, (PGA-pep) to obtain miR@PCL-PEI/Dab@PGA-pep nanoformulation. The stimulus pH- and redox- reactive of PGA-pep was ascribed to exhibit an enhanced release of drug in the tumor microenvironment as well as improve the stability of miR-200c during the blood circulation. In addition, the presence of LY2510924 peptide would enhance the binding affinity of miR@PCL-PEI/Dab@PGA-pep NPs to cancer cells, leading to improved cellular uptake, cytotoxicity, and in vivo accumulation into tumor area. The in vivo results indicated that both, the immunogenic cell death (ICD) and the inhibition of PD-L1 expression, induced by treatment with CXCR-4 targeted nanoparticles, enables to improve the DC maturation in lymph node and CD8+ T cell activation in the spleen. More importantly, effector T cells were increasingly infiltrated into the tumor, whereas the immunosuppressive factors like PD-L1 expression and regulatory T cells were significantly reduced. They, all together, promote the immune responses against the tumor, indicating the therapeutic efficiency of the current strategy in cancer treatment.
Insights
This study developed a novel nanoparticle delivering BRAF inhibitor and miR-200c to overcome resistance to PD-1/PD-L1 therapy by enhancing immune cell infiltration and reducing immunosuppression for improved cancer treatment.
Area of Science:
- Oncology
- Immunotherapy
- Nanomedicine
Background:
- PD-1/PD-L1 blockade therapy shows limited efficacy due to poor immune cell infiltration and immunosuppressive tumor microenvironments.
- Combining BRAF-targeted therapy with PD-L1 inhibition may improve clinical outcomes.
Purpose of the Study:
- To develop a CXCR4-targeted nanoparticle co-delivering dabrafenib (BRAF inhibitor) and miR-200c (PD-L1 downregulator).
- To evaluate the nanoparticle's efficacy in enhancing anti-tumor immune responses and overcoming immunotherapy resistance.
Main Methods:
- A pH- and redox-sensitive nanoparticle (miR@PCL-PEI/Dab@PGA-pep) was synthesized, co-delivering dabrafenib and miR-200c.
- The nanoparticle was functionalized with a CXCR4 antagonist peptide (LY2510924) for targeted delivery.
- In vivo studies assessed nanoparticle uptake, tumor accumulation, immune cell activation, and anti-tumor efficacy.
Main Results:
- The nanoparticle demonstrated enhanced drug release in the tumor microenvironment and improved stability of miR-200c.
- Targeted nanoparticles increased cellular uptake, cytotoxicity, and tumor accumulation.
- Treatment induced immunogenic cell death, inhibited PD-L1 expression, promoted DC maturation and CD8+ T cell activation.
- Enhanced effector T cell infiltration into tumors and reduced immunosuppressive factors were observed.
Conclusions:
- The CXCR4-targeted nanoparticle strategy effectively overcomes resistance to PD-1/PD-L1 therapy.
- This approach enhances anti-tumor immunity by modulating the tumor microenvironment and promoting immune cell infiltration.
- The developed nanoformulation shows significant therapeutic potential for cancer treatment.
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