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Paramyxoviruses for Tumor-targeted Immunomodulation: Design and Evaluation Ex Vivo
Published on: January 7, 2019
Optimization of Whole Tumor Cell Vaccines by Interaction with Phagocytic Receptors
1Department of Integrative Oncology, BC Cancer, Vancouver, BC V5Z 1L3, Canada.
Abstract:
The principal event in the function of whole-cell cancer vaccines is the ingestion of vaccine-delivered tumor antigen-containing material, which is performed by the patient's antigen-presenting cells (APCs) through the employment of their phagocytic receptors. The goal of the present study was to identify the phagocytic receptors critical for the therapeutic efficacy of whole-cell cancer vaccines. The model of photodynamic therapy (PDT)-generated vaccines based on mouse SCCVII tumors was utilized, with in vitro expanded SCCVII cells treated by PDT serving as the vaccine material used for treating mice bearing established SCCVII tumors. The therapeutic impact, monitored as delayed progression of vaccinated tumors, was almost completely eliminated when antibodies specifically blocking the activity of LOX-1 scavenger receptor were administered to mice 30 min before vaccination. Similar, but much less pronounced, impacts were found with antibodies neutralizing the activity of CR3/CR4 receptors recognizing complement-opsonized vaccine cells, and with those blocking activating Fcγ receptors that recognized IgG antibody-based opsonins. A strikingly contrary action, a greatly enhanced tumor control by the vaccine, was found by blocking immune inhibitory receptor, FcγRIIB. The reported findings establish, therefore, an attractive strategy that can be effectively exploited for potent therapeutic enhancement of PDT-generated (and probably other) whole-cell tumor vaccines.
Insights
Blocking the LOX-1 scavenger receptor significantly impairs whole-cell cancer vaccine efficacy. Targeting specific phagocytic receptors offers a strategy to enhance cancer vaccine therapy.
Area of Science:
- Immunology
- Oncology
- Vaccinology
Background:
- Whole-cell cancer vaccines rely on antigen-presenting cells (APCs) ingesting tumor material via phagocytic receptors.
- Identifying critical receptors is key to optimizing whole-cell cancer vaccine effectiveness.
Purpose of the Study:
- To identify phagocytic receptors essential for the therapeutic efficacy of whole-cell cancer vaccines.
- To explore strategies for enhancing cancer vaccine performance.
Main Methods:
- Utilized a photodynamic therapy (PDT)-generated vaccine model using mouse SCCVII tumors.
- Administered blocking antibodies against specific phagocytic receptors (LOX-1, CR3/CR4, Fcγ receptors) before vaccination.
- Monitored therapeutic impact by observing delayed tumor progression in vaccinated mice.
Main Results:
- Blocking the LOX-1 scavenger receptor almost completely eliminated the therapeutic effect of the vaccine.
- Neutralizing CR3/CR4 and activating Fcγ receptors had a less pronounced negative impact.
- Blocking the inhibitory FcγRIIB receptor significantly enhanced tumor control.
Conclusions:
- LOX-1 is a critical phagocytic receptor for the efficacy of PDT-generated whole-cell cancer vaccines.
- Targeting specific phagocytic receptors, particularly LOX-1, presents a viable strategy for enhancing whole-cell cancer vaccine therapy.
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