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Experimental Melanoma Immunotherapy Model Using Tumor Vaccination with a Hematopoietic Cytokine
Published on: February 24, 2023
SRA inhibition improves antitumor potency of antigen-targeted chaperone vaccine
Jie Qian1, Xiaofei Yu1, Zheng Liu1
1Department of Human & Molecular Genetics, Virginia Commonwealth University School of Medicine, Richmond, VA, United States.
Abstract:
We have previously demonstrated that scavenger receptor A (SRA) acts as an immunosuppressive regulator of dendritic cell (DC) function in activating antitumor T cells. Here we investigate the potential of inhibiting SRA activity to enhance DC-targeted chaperone vaccines including one that was recently evaluated in melanoma patients. We show that short hairpin RNA-mediated SRA silencing significantly enhances the immunogenicity of DCs that have captured chaperone vaccines designed to target melanoma (i.e., hsp110-gp100) and breast cancer (i.e., hsp110-HER/Neu-ICD). SRA downregulation results in heightened activation of antigen-specific T cells and increased CD8+ T cell-dependent tumor inhibition. Additionally, small interfering RNA (siRNA) complexed with the biodegradable, biocompatible chitosan as a carrier can efficiently reduce SRA expression on CD11c+ DCs in vitro and in vivo. Our proof-of-concept study shows that direct administration of the chitosan-siRNA complex to mice promotes chaperone vaccine-elicited cytotoxic T lymphocyte (CTL) response, culminating in improved eradication of experimental melanoma metastases. Targeting SRA with this chitosan-siRNA regimen combined with the chaperone vaccine also leads to reprogramming of the tumor environment, indicated by elevation of the cytokine genes (i.e., ifng, il12) known to skew Th1-like cellular immunity and increased tumor infiltration by IFN-γ+CD8+ CTLs as well as IL-12+CD11c+ DCs. Given the promising antitumor activity and safety profile of chaperone vaccine in cancer patients, further optimization of the chitosan-siRNA formulation to potentially broaden the immunotherapeutic benefits of chaperone vaccine is warranted.
Insights
Inhibiting scavenger receptor A (SRA) enhances dendritic cell (DC) function for chaperone vaccines. This approach boosts T cell responses and tumor inhibition, offering a promising cancer immunotherapy strategy.
Area of Science:
- Immunology
- Cancer Research
- Vaccinology
Background:
- Scavenger receptor A (SRA) suppresses dendritic cell (DC) function and antitumor T cell responses.
- Chaperone vaccines are a promising cancer immunotherapy approach, with some evaluated in melanoma patients.
Purpose of the Study:
- To investigate the potential of inhibiting SRA to enhance DC-targeted chaperone vaccines.
- To evaluate the efficacy of SRA silencing combined with chaperone vaccines in preclinical cancer models.
Main Methods:
- Utilized short hairpin RNA (shRNA) to silence SRA expression in DCs.
- Employed small interfering RNA (siRNA) complexed with chitosan as a carrier for SRA delivery to DCs.
- Assessed T cell activation, tumor inhibition, and tumor microenvironment changes in mice.
Main Results:
- SRA silencing significantly enhanced the immunogenicity of DCs loaded with melanoma and breast cancer chaperone vaccines.
- SRA downregulation led to increased antigen-specific T cell activation and CD8+ T cell-dependent tumor inhibition.
- Chitosan-siRNA administration promoted chaperone vaccine-elicited cytotoxic T lymphocyte (CTL) responses and eradicated experimental melanoma metastases.
- Combined therapy reprogrammed the tumor environment, increasing pro-inflammatory cytokines (IFN-γ, IL-12) and CTL/DC infiltration.
Conclusions:
- Inhibiting SRA activity via chitosan-siRNA complexes can enhance the efficacy of DC-targeted chaperone vaccines.
- This combination therapy demonstrates significant antitumor activity and favorable safety profiles.
- Further optimization of chitosan-siRNA formulations may broaden the immunotherapeutic benefits of chaperone vaccines for cancer treatment.
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