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SA-4-1BBL and monophosphoryl lipid A constitute an efficacious combination adjuvant for cancer vaccines
Abhishek K Srivastava1, Gunes Dinc1, Rajesh K Sharma1
1Institute for Cellular Therapeutics and Department of Microbiology and Immunology, University of Louisville, Louisville, Kentucky.
Abstract:
Vaccines based on tumor-associated antigens (TAA) have limited therapeutic efficacy due to their weak immunogenic nature and the various immune evasion mechanisms active in advanced tumors. In an effort to overcome these limitations, we evaluated a combination of the T-cell costimulatory molecule SA-4-1BBL with the TLR4 agonist monophosphoryl lipid A (MPL) as a novel vaccine adjuvant system. In the TC-1 mouse allograft model of human papilloma virus (HPV)-induced cancer, a single administration of this combination adjuvant with HPV E7 protein caused tumor rejection in all tumor-bearing mice. On its own, SA-4-1BBL outperformed MPL in this setting. Against established tumors, two vaccinations were sufficient to elicit rejection in the majority of mice. In the metastatic model of Lewis lung carcinoma, vaccination of the TAA survivin with SA-4-1BBL/MPL yielded superior efficacy against pulmonary metastases. Therapeutic efficacy of SA-4-1BBL/MPL was achieved in the absence of detectable toxicity, correlating with enhanced dendritic cell activation, CD8(+) T-cell function, and an increased intratumoral ratio of CD8(+) T effector cells to CD4(+)FoxP3(+) T regulatory cells. Unexpectedly, use of MPL on its own was associated with unfavorable intratumoral ratios of these T-cell populations, resulting in suboptimal efficacy. The efficacy of MPL monotherapy was restored by depletion of T regulatory cells, whereas eliminating CD8(+) T cells abolished the efficacy of its combination with SA-4-1BBL. Mechanistic investigations showed that IFNγ played a critical role in supporting the therapeutic effect of SA-4-1BBL/MPL. Taken together, our results offer a preclinical proof of concept for the use of a powerful new adjuvant system for TAA-based cancer vaccines.
Insights
A novel vaccine adjuvant combining SA-4-1BBL and monophosphoryl lipid A (MPL) effectively eliminates tumors. This combination enhances T-cell responses and shows promise for cancer immunotherapy, outperforming individual components.
Area of Science:
- Immunology
- Oncology
- Vaccinology
Background:
- Cancer vaccines using tumor-associated antigens (TAAs) often fail due to weak immunogenicity and tumor immune evasion.
- Advanced cancers present significant challenges for TAA-based vaccine efficacy.
Purpose of the Study:
- To evaluate a novel vaccine adjuvant system combining SA-4-1BBL and monophosphoryl lipid A (MPL).
- To assess the therapeutic efficacy of this adjuvant system in preclinical cancer models.
Main Methods:
- Utilized TC-1 mouse allograft and Lewis lung carcinoma models.
- Administered HPV E7 protein or survivin antigen with the SA-4-1BBL/MPL adjuvant.
- Assessed tumor rejection, metastasis, immune cell activation (dendritic cells, CD8+ T cells, T regulatory cells), and cytokine production (IFNγ).
Main Results:
- A single dose of SA-4-1BBL/MPL adjuvant with antigen led to complete tumor rejection in the TC-1 model.
- The combination therapy demonstrated superior efficacy against pulmonary metastases in the lung carcinoma model.
- Therapeutic effects correlated with enhanced dendritic cell activation, CD8+ T cell function, and a favorable T effector/T regulatory cell ratio.
- MPL alone showed suboptimal efficacy and unfavorable immune cell ratios, which were improved by T regulatory cell depletion.
Conclusions:
- The SA-4-1BBL/MPL adjuvant system represents a promising strategy for enhancing TAA-based cancer vaccine efficacy.
- This combination overcomes limitations of TAA vaccines by boosting anti-tumor immunity.
- IFNγ is crucial for the therapeutic benefits of the SA-4-1BBL/MPL adjuvant system.
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