SCIB2, an antibody DNA vaccine encoding NY-ESO-1 epitopes, induces potent antitumor immunity which is further
Wei Xue1, Rachael L Metheringham1, Victoria A Brentville1
1Scancell Limited, Academic Department of Clinical Oncology, University of Nottingham, City Hospital Campus , Nottingham, UK.
Abstract:
Checkpoint blockade has demonstrated promising antitumor responses in approximately 10-40% of patients. However, the majority of patients do not make a productive immune response to their tumors and do not respond to checkpoint blockade. These patients may benefit from an effective vaccine that stimulates high-avidity T cell responses in combination with checkpoint blockade. We have previously shown that incorporating TRP-2 and gp100 epitopes into the CDR regions of a human IgG1 DNA (ImmunoBody®: IB) results in significant tumor regression both in animal models and patients. This vaccination strategy is superior to others as it targets antigen to antigen-presenting cells and stimulates high-avidity T cell responses. To broaden the application of this vaccination strategy, 16 NY-ESO-1 epitopes, covering over 80% of HLA phenotypes, were incorporated into the IB (SCIB2). They produced higher frequency and avidity T cell responses than peptide vaccination. These T cells were of sufficient avidity to kill NY-ESO-1-expressing tumor cells, and in vivo controlled the growth of established B16-NY-ESO-1 tumors, resulting in long-term survival (35%). When SCIB2 was given in combination with Treg depletion, CTLA-4 blockade or PD-1 blockade, long-term survival from established tumors was significantly enhanced to 56, 67 and 100%, respectively. Translating these responses into the clinic by using a combination of SCIB2 vaccination and checkpoint blockade can only further improve clinical responses.
Insights
Checkpoint blockade therapy shows limited success. A novel vaccine (SCIB2) combined with checkpoint blockade significantly enhances antitumor responses and survival rates in preclinical models.
Area of Science:
- Immunology
- Oncology
- Vaccine Development
Background:
- Checkpoint blockade therapy benefits only a subset of cancer patients.
- Many patients fail to mount effective anti-tumor immune responses.
- Combination strategies are needed to improve therapeutic outcomes.
Purpose of the Study:
- To develop a novel vaccine strategy targeting multiple tumor antigens.
- To evaluate the efficacy of this vaccine alone and in combination with checkpoint blockade.
- To assess the impact on T cell responses and tumor control.
Main Methods:
- Incorporation of 16 NY-ESO-1 epitopes into an ImmunoBody® DNA vaccine (SCIB2).
- Evaluation of T cell frequency, avidity, and tumor-killing capacity.
- Assessment of tumor growth control and long-term survival in preclinical models.
- Combination therapy with SCIB2, Treg depletion, CTLA-4 blockade, and PD-1 blockade.
Main Results:
- SCIB2 vaccination induced high-frequency, high-avidity T cell responses.
- SCIB2 demonstrated significant control of established NY-ESO-1 expressing tumors, achieving 35% long-term survival.
- Combination therapy with SCIB2 and checkpoint blockade (CTLA-4 or PD-1) significantly enhanced long-term survival to 67% and 100%, respectively.
Conclusions:
- SCIB2 is a promising vaccine platform for generating potent anti-tumor T cell immunity.
- Combination of SCIB2 vaccination with checkpoint blockade represents a highly effective strategy for cancer treatment.
- This approach holds potential for improving clinical responses in patients unresponsive to current therapies.
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