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Paramyxoviruses for Tumor-targeted Immunomodulation: Design and Evaluation Ex Vivo
Published on: January 7, 2019
Development of a Versatile Cancer Vaccine Format Targeting Antigen-Presenting Cells Using Proximity-Based Sortase
Aru Z Wang1,2,3, Hendrik J Brink1,2,3, Rianne G Bouma1,2,3
1Department of Molecular Cell Biology and Immunology, Amsterdam UMC Location Vrije Universiteit Amsterdam, De Boelelaan 1117, 1081 HV Amsterdam, The Netherlands.
Abstract:
Cancer vaccines are a promising strategy to increase tumor-specific immune responses in patients who do not adequately respond to checkpoint inhibitors. Cancer vaccines that contain patient-specific tumor antigens are most effective but also necessitate the production of patient-specific vaccines. This study aims to develop a versatile cancer vaccine format in which patient-specific tumor antigens can be site-specifically conjugated by a proximity-based Sortase A (SrtA)-mediated ligation (PBSL) approach to antibodies that specifically bind to antigen-presenting cells to stimulate immune responses. DEC205 and CD169 are both receptors expressed on antigen-presenting cells that can be targeted to deliver antigens and stimulate T-cell responses. We used the CRISPR/HDR platform to produce mouse heavy chain IgG2a antibodies with DEC205 or CD169 specificity containing an SrtA recognition motif followed by a SpyTag at the C-terminus. Using a recombinant protein of SrtA linked to SpyCatcher, we applied proximity-based SrtA-mediated ligation to ligate fluorescein isothiocyanate (FITC)-labeled or antigenic peptides to the antibodies. Ligated antibodies bound to DEC205-expressing dendritic cells or CD169-expressing macrophages both in vitro and in vivo. More importantly, immunization with DEC205- or CD169-specific Abs linked to T-cell epitopes efficiently stimulated T-cell responses in vivo. To conclude, we have developed a cancer vaccine format using PBSL that enables the rapid incorporation of tumor antigens and could potentially be implemented for the synthesis of personalized cancer vaccines.
Insights
This study presents a new cancer vaccine platform using proximity-based Sortase A-mediated ligation (PBSL). This versatile format rapidly incorporates patient-specific tumor antigens to enhance immune responses against cancer.
Area of Science:
- Immunology
- Biotechnology
- Oncology
Background:
- Cancer vaccines aim to boost anti-tumor immunity, especially in patients unresponsive to checkpoint inhibitors.
- Personalized cancer vaccines using patient-specific antigens are highly effective but complex to produce.
- Targeting antigen-presenting cells (APCs) with specific receptors like DEC205 and CD169 can enhance immune stimulation.
Purpose of the Study:
- To develop a versatile cancer vaccine platform enabling site-specific conjugation of tumor antigens.
- To utilize proximity-based Sortase A-mediated ligation (PBSL) for antigen attachment to APC-targeting antibodies.
- To create a rapid and adaptable method for synthesizing personalized cancer vaccines.
Main Methods:
- Engineered mouse IgG2a antibodies targeting DEC205 or CD169, incorporating Sortase A (SrtA) motifs and SpyTag.
- Utilized SrtA-SpyCatcher system for proximity-based SrtA-mediated ligation of antigens (FITC or peptides) to antibodies.
- Employed CRISPR/HDR for antibody engineering and assessed antibody binding and immune stimulation in vitro and in vivo.
Main Results:
- Successfully ligated antigens to DEC205- and CD169-specific antibodies using the PBSL approach.
- Demonstrated that the conjugated antibodies bind effectively to DEC205-expressing dendritic cells and CD169-expressing macrophages in vitro and in vivo.
- Showed that immunization with these antibody-antigen conjugates efficiently stimulated T-cell responses in vivo.
Conclusions:
- Developed a novel cancer vaccine format utilizing PBSL for rapid antigen incorporation.
- The platform enables site-specific conjugation of tumor antigens to APC-targeting antibodies.
- This approach holds promise for the efficient synthesis of personalized cancer vaccines.
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