MyD88/CD40 Genetic Adjuvant Function in Cutaneous Atypical Antigen-Presenting Cells Contributes to DNA Vaccine
Matthew R Collinson-Pautz1,2, Kevin M Slawin3, Jonathan M Levitt1,2
1Interdepartmental Program in Translational Biology and Molecular Medicine, Baylor College of Medicine, Houston, TX, United States of America.
Abstract:
Therapeutic DNA-based vaccines aim to prime an adaptive host immune response against tumor-associated antigens, eliminating cancer cells primarily through CD8+ cytotoxic T cell-mediated destruction. To be optimally effective, immunological adjuvants are required for the activation of tumor-specific CD8+ T cells responses by DNA vaccination. Here, we describe enhanced anti-tumor efficacy of an in vivo electroporation-delivered DNA vaccine by inclusion of a genetically encoded chimeric MyD88/CD40 (MC) adjuvant, which integrates both innate and adaptive immune signaling pathways. When incorporated into a DNA vaccine, signaling by the MC adjuvant increased antigen-specific CD8+ T cells and promoted elimination of pre-established tumors. Interestingly, MC-enhanced vaccine efficacy did not require direct-expression of either antigen or adjuvant by local antigen-presenting cells, but rather our data supports a key role for MC function in "atypical" antigen-presenting cells of skin. In particular, MC adjuvant-modified keratinocytes increased inflammatory cytokine secretion, upregulated surface MHC class I, and were able to increase in vitro and in vivo priming of antigen-specific CD8+ T cells. Furthermore, in the absence of critical CD8α+/CD103+ cross-priming dendritic cells, MC was still able to promote immune priming in vivo, albeit at a reduced level. Altogether, our data support a mechanism by which MC signaling activates an inflammatory phenotype in atypical antigen-presenting cells within the cutaneous vaccination site, leading to an enhanced CD8+ T cell response against DNA vaccine-encoded antigens, through both CD8α+/CD103+ dendritic cell-dependent and independent pathways.
Insights
A novel chimeric MyD88/CD40 (MC) adjuvant enhances DNA vaccine effectiveness against tumors by boosting CD8+ T cell responses. This adjuvant activates atypical skin cells, improving anti-tumor immunity through both dendritic cell-dependent and independent pathways.
Area of Science:
- Immunology
- Oncology
- Vaccine Development
Background:
- Therapeutic DNA vaccines require immunological adjuvants to activate robust CD8+ cytotoxic T cell responses against cancer.
- Chimeric MyD88/CD40 (MC) adjuvant integrates innate and adaptive immune signaling for enhanced vaccine efficacy.
Purpose of the Study:
- To evaluate the anti-tumor efficacy of a DNA vaccine delivered via in vivo electroporation with a genetically encoded MC adjuvant.
- To elucidate the mechanism of action for the MC adjuvant in enhancing anti-tumor immune responses.
Main Methods:
- Development and in vivo electroporation delivery of a DNA vaccine encoding a tumor antigen and the MC adjuvant.
- Assessment of antigen-specific CD8+ T cell responses and tumor elimination.
- Investigation of the role of antigen-presenting cells (APCs), including keratinocytes and dendritic cells, in MC adjuvant function.
Main Results:
- The MC adjuvant significantly enhanced anti-tumor efficacy and increased antigen-specific CD8+ T cell responses.
- MC adjuvant function was observed in atypical skin APCs, such as keratinocytes, which secreted inflammatory cytokines and upregulated MHC class I.
- MC adjuvant promoted immune priming in vivo even in the absence of critical cross-priming dendritic cells.
Conclusions:
- The MC adjuvant enhances DNA vaccine efficacy by activating inflammatory phenotypes in atypical cutaneous APCs, leading to improved CD8+ T cell responses.
- This mechanism involves both CD8α+/CD103+ dendritic cell-dependent and independent pathways, offering a versatile strategy for cancer immunotherapy.
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