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Updated: Nov 4, 2025

Testing Cancer Immunotherapeutics in a Humanized Mouse Model Bearing Human Tumors
Published on: December 16, 2022
Local Anti-PD-1 Delivery Prevents Progression of Premalignant Lesions in a 4NQO-Oral Carcinogenesis Mouse Model
Yewen Shi1,2, Tong-Xin Xie1, David G Leach3
1Department of Head and Neck Surgery, University of Texas MD Anderson Cancer Center, Houston, Texas.
Abstract:
Although the principle of systemic treatment to prevent the progression of oral premalignant lesions (OPL) has been demonstrated, there remains a lack of consensus about an optimal approach that balances clinical efficacy with toxicity concerns. Recent advances in cancer therapy using approaches targeting the tumor immune microenvironment (TIME) including immune-checkpoint inhibitors indicate that these agents have significant clinically activity against different types of cancers, including oral cancer, and therefore they may provide an effective oral cancer prevention strategy for patients with OPLs. Our past work showed that systemic delivery of a monoclonal antibody to the programmed death receptor 1 (PD-1) immune checkpoint can inhibit the progression of OPLs to oral cancer in a syngeneic murine oral carcinogenesis model. Here we report a novel approach of local delivery of a PD-1 immune-checkpoint inhibitor loaded using a hydrogel, which significantly reduces the progression of OPLs to carcinomas. In addition, we detected a significant infiltration of regulatory T cells associated with oral lesions with p53 mutation, and a severe loss of expression of STING, which correlated with a decreased infiltration of dendritic cells in the oral lesions. However, a single local dose of PD-1 inhibitor was found to restore stimulator of interferon response cGAMP interactor 1 (STING) and CD11c expression and increase the infiltration of CD8+ T cells into the TIME irrespective of the p53 mutational status. Overall, we provide evidence for the potential clinical value of local delivery of biomaterials loaded with anti-PD-1 antibodies to prevent malignant progression of OPLs. PREVENTION RELEVANCE: Oral cancer is an aggressive disease, with an overall survival rate of 50%. Preinvasive histologic abnormalities such as tongue dysplasia represent an early stage of oral cancer; however, there are no treatments to prevent oral carcinoma progression. Here, we combined biomaterials loaded with an immunotherapeutic agent preventing oral cancer progression.
Insights
Local delivery of a programmed death receptor 1 (PD-1) inhibitor via hydrogel shows promise in preventing oral premalignant lesions from progressing to oral cancer, restoring immune responses.
Area of Science:
- Immunology
- Oncology
- Biomaterials Science
Background:
- Oral premalignant lesions (OPLs) have a risk of progressing to oral cancer, necessitating effective prevention strategies.
- Current systemic treatments for OPLs lack consensus due to toxicity concerns.
- Immune-checkpoint inhibitors targeting the tumor immune microenvironment (TIME) show efficacy in various cancers, including oral cancer.
Purpose of the Study:
- To investigate the efficacy of locally delivered programmed death receptor 1 (PD-1) immune-checkpoint inhibitors for preventing OPL progression.
- To explore the impact of local PD-1 inhibition on the TIME, including immune cell infiltration and molecular signaling.
Main Methods:
- Utilized a hydrogel system for local delivery of a PD-1 immune-checkpoint inhibitor in a murine oral carcinogenesis model.
- Assessed the progression of OPLs to carcinomas.
- Analyzed immune cell populations (regulatory T cells, CD8+ T cells, dendritic cells) and molecular markers (STING, CD11c) within oral lesions.
Main Results:
- Local delivery of PD-1 inhibitor via hydrogel significantly reduced OPL progression to carcinomas.
- PD-1 inhibition restored stimulator of interferon response cGAMP interactor 1 (STING) and CD11c expression.
- A single local dose increased CD8+ T cell infiltration into the TIME, regardless of p53 mutational status.
Conclusions:
- Local delivery of biomaterials loaded with anti-PD-1 antibodies presents a promising strategy for preventing oral cancer progression.
- This approach offers a potential alternative to systemic treatments, balancing efficacy with reduced toxicity.
- Understanding TIME dynamics, including STING pathway and immune cell infiltration, is crucial for optimizing OPL prevention.

