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A Peptide-Based Small RNA Delivery System to Suppress Tumor Growth by Remodeling the Tumor Microenvironment
Rui Zhang1, Lin Tang1, Binyan Zhao1
1State Key Laboratory of Biotherapy and Cancer Center, West China Hospital, Sichuan University and Collaborative Innovation Center for Biotherapy, Chengdu 610041, China.
Abstract:
MicroRNAs can regulate a variety of physiological and pathological processes and are increasingly recognized as being involved in regulating the malignant progression of cancer, which is an important direction for the study and treatment of cancer. In addition, the tumor microenvironment has gradually become an important direction of study for combating cancer. Researchers can inhibit tumor growth by remodeling and suppressing an immunosuppressive phenotype in the tumor microenvironment. Therefore, the combination of microRNA delivery and tumor microenvironment remodeling may be a potential research direction. In a previous study, we developed a novel cationic and hydrophilic antimicrobial peptide, DP7, by computer simulation. It was found that cholesterol-modified DP7 (DP7-C) has dual functions as a carrier and an immune adjuvant. In this experiment, we used DP7-C to deliver microRNAs or inhibitors intratumorally, where it played a dual role as a carrier and an immune adjuvant. As a delivery vector, DP7-C has more advantages in terms of transfection efficiency and cytotoxicity than Lipo2000 and PEI25K. Components of the DP7-C/RNA complex can effectively escape endosomes after uptake via caveolin- and clathrin-dependent pathways. As an immune adjuvant, DP7-C can activate dendritic cells and promote macrophage polarization. Moreover, it can transform the immunosuppressive tumor microenvironment into an immune-activated tumor microenvironment, indicating its potential as an anticancer therapy. In conclusion, this study identifies a novel microRNA and inhibitor delivery system that can remodel the tumor microenvironment and introduces an alternative scheme for antitumor treatment.
Insights
Researchers developed DP7-C, a novel peptide that delivers microRNAs and inhibitors. This system remodels the tumor microenvironment, transforming it from immunosuppressive to immune-activated for potential anticancer therapy.
Area of Science:
- Oncology
- Immunology
- Biotechnology
Background:
- MicroRNAs regulate cancer progression and the tumor microenvironment is crucial for cancer therapy.
- Antimicrobial peptides offer potential as drug delivery systems and immune adjuvants.
Purpose of the Study:
- To investigate the dual role of cholesterol-modified DP7 (DP7-C) as a microRNA/inhibitor delivery vector and immune adjuvant.
- To evaluate DP7-C's efficacy in remodeling the immunosuppressive tumor microenvironment for anticancer therapy.
Main Methods:
- DP7-C was synthesized and characterized for its delivery capabilities and immune-modulating functions.
- DP7-C/RNA complexes were used for intratumoral delivery of microRNAs or inhibitors.
- Transfection efficiency, cytotoxicity, endosomal escape pathways, immune cell activation, and tumor microenvironment modulation were assessed.
Main Results:
- DP7-C demonstrated superior transfection efficiency and lower cytotoxicity compared to Lipo2000 and PEI25K.
- DP7-C/RNA complexes efficiently escaped endosomes via caveolin- and clathrin-dependent pathways.
- DP7-C activated dendritic cells, promoted macrophage polarization, and converted the tumor microenvironment to an immune-activated state.
Conclusions:
- DP7-C is a novel and effective system for delivering microRNAs and inhibitors, capable of remodeling the tumor microenvironment.
- This dual-function peptide offers a promising alternative strategy for anticancer treatment by modulating the tumor immune microenvironment.
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