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Chemical Conjugation of a Purified DEC-205-Directed Antibody with Full-Length Protein for Targeting Mouse Dendritic Cells In Vitro and In Vivo
Published on: February 5, 2021
Targeting the immunoregulator SRA/CD204 potentiates specific dendritic cell vaccine-induced T-cell response and
Huanfa Yi1, Chunqing Guo, Xiaofei Yu
1Department of Human and Molecular Genetics, Virginia Commonwealth University School of Medicine, Richmond, Virginia, USA.
Abstract:
Although dendritic cell (DC) vaccines offer promise as cancer immunotherapy, further improvements are needed to amplify their clinical therapeutic efficacy. The pattern recognition scavenger receptor SRA/CD204 attenuates the ability of DCs to activate CD8(+) T-cell responses. Therefore, we examined the impact of SRA/CD204 on antitumor responses generated by DC vaccines and we also evaluated the feasibility of enhancing DC vaccine potency by SRA/CD204 blockade. DCs from SRA/CD204-deficient mice were more immunogenic in generating antitumor responses to B16 melanoma, compared with DCs from wild-type mice. Similarly, siRNA-mediated knockdown of SRA/CD204 by lentiviral vectors improved the ability of wild-type DCs to stimulate the expansion and activation of CD8(+) T cells specific for idealized or established melanoma antigens in mice. Using SRA/CD204-silenced DCs to generate antigen-targeted vaccines, we documented a marked increase in the level of antitumor immunity achieved against established B16 tumors and metastases. This increase was associated with enhanced activation of antigen specific CTLs, greater tumor infiltration by CD8(+) T cells and NK cells, and increased intratumoral ratios of both CD4(+) and CD8(+) T-effector cells to CD4(+)CD25(+) T-regulatory cells. Our studies establish that downregulating SRA/CD204 strongly enhances DC-mediated antitumor immunity. In addition, they provide a rationale to enhance DC vaccine potency through SRA/CD204-targeting approaches that can improve clinical outcomes in cancer treatment.
Insights
Blocking the scavenger receptor SRA/CD204 enhances dendritic cell (DC) vaccine effectiveness against melanoma. This approach boosts CD8(+) T-cell responses, improving antitumor immunity and offering a strategy for better cancer immunotherapy.
Area of Science:
- Immunology
- Oncology
- Vaccinology
Background:
- Dendritic cell (DC) vaccines are a promising cancer immunotherapy.
- The scavenger receptor SRA/CD204 inhibits DC activation of CD8(+) T cells.
- Enhancing DC vaccine potency requires overcoming SRA/CD204-mediated suppression.
Purpose of the Study:
- To investigate the role of SRA/CD204 in DC vaccine-mediated antitumor responses.
- To evaluate the potential of SRA/CD204 blockade for enhancing DC vaccine efficacy.
- To explore SRA/CD204-silenced DCs for improved cancer immunotherapy.
Main Methods:
- Comparison of DC immunogenicity from SRA/CD204-deficient and wild-type mice against B16 melanoma.
- siRNA-mediated knockdown of SRA/CD204 in wild-type DCs using lentiviral vectors.
- Assessment of antigen-specific CD8(+) T-cell responses and antitumor immunity in vivo.
Main Results:
- SRA/CD204-deficient DCs showed enhanced antitumor responses.
- SRA/CD204 knockdown in DCs improved CD8(+) T-cell activation and expansion.
- DC vaccines using SRA/CD204-silenced cells demonstrated increased antitumor immunity against established B16 tumors and metastases.
- Enhanced immune cell infiltration and effector-to-regulatory T-cell ratios were observed in tumors.
Conclusions:
- Downregulation of SRA/CD204 significantly enhances DC-mediated antitumor immunity.
- Targeting SRA/CD204 represents a viable strategy to improve DC vaccine potency.
- This approach holds potential for improving clinical outcomes in cancer treatment.
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