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Author Spotlight: A Model to Study the Systemic and Local Dynamics of CD8+ T Cells During LN Metastasis
Published on: January 26, 2024
Regulating tumor microenvironments by a lymph node-targeting adjuvant via tumor-specific CTL-derived IFNγ
Xiaojing Xu1, Cheng Yi2, Tianyun Feng2
1College of Basic Medicine and Biological Sciences, Medical Department, Soochow University, Suzhou 215123, Jiangsu, China.
Abstract:
Inducing tumor-specific T cell responses and regulating suppressive tumor microenvironments have been a challenge for effective tumor therapy. CpG (ODN), the Toll-like receptor 9 agonist, has been widely used as adjuvants of cancer vaccines to induce T cell responses. We developed a novel adjuvant to improve the targeting of lymph nodes. CpG were modified with lipid and glycopolymers by the combination of photo-induced RAFT polymerization and click chemistry, and the novel adjuvant was termed as lipid-glycoadjuvant@AuNPs (LCpG). OVA protein was used as model antigen and melanoma model was established to test the immunotherapy effect of the adjuvant. In tumor model, the antitumor effect and mechanism of LCpG on the response of CTLs were examined by flow cytometry and cell cytotoxicity assay. The effects of LCpG on macrophage polarization and Tregs differentiation in tumor microenvironment were also studied by cell depletion assay and cytokine neutralization assay. We also tested the therapeutic effect of the combination of the adjuvant and anti-PD-1 treatment. LCpG could be rapidly transported to and retained longer in the lymphoid nodes than unmodified CpG. In melanoma model, LCpG controlled both primary tumor and its metastasis, and established long-term memory. In spleen and tumor draining lymphoid nodes, LCpG activated tumor-specific Tc1 responses, with increased CD8+ T-cell proliferation, antigen-specific Tc1 cytokine production and specific-tumor killing capacity. In tumor microenvironments, antigen-specific Tc1 induced by the LCpG promoted CTL infiltration, skewed tumor associated macrophages to M1 phenotype, regulated Treg and induced proinflammatory cytokines production in a CTL-derived IFN-γ-dependent manner. In vivo cell depletion and adoptive transfer experiments confirmed that antitumor activity of LCpG included vaccine was mainly dependent on CTL-derived IFN-γ. The anti-tumor efficacy of LCpG was dramatically enhanced when combined with anti-PD1 immunotherapy. LCpG was a promising adjuvant for vaccine formulation which could augment tumor-specific Tc1 activity, and regulate tumor microenvironments.
Insights
A novel lipid-glycoadjuvant (LCpG) enhances cancer vaccine efficacy by improving lymph node targeting and boosting tumor-specific T cell responses. This adjuvant effectively controls tumors, reduces metastasis, and establishes long-term immunity.
Area of Science:
- Immunology
- Nanotechnology
- Oncology
Background:
- Effective cancer immunotherapy requires inducing tumor-specific T cell responses and overcoming suppressive tumor microenvironments.
- CpG oligonucleotides (ODN), Toll-like receptor 9 agonists, are used as vaccine adjuvants but can be improved for targeting.
- Novel adjuvant strategies are needed to enhance lymph node delivery and T cell activation for improved cancer treatment.
Purpose of the Study:
- To develop and evaluate a novel lipid-glycopolymer-modified CpG adjuvant (LCpG) for enhanced lymph node targeting and immunotherapy.
- To investigate the anti-tumor effects of LCpG in a melanoma model, focusing on T cell responses and tumor microenvironment modulation.
- To assess the combination therapy of LCpG with anti-PD-1 immunotherapy for synergistic anti-tumor efficacy.
Main Methods:
- LCpG was synthesized by modifying CpG with lipid and glycopolymers using photo-induced RAFT polymerization and click chemistry.
- Immunotherapy efficacy was tested in a melanoma mouse model using OVA protein as a model antigen.
- Flow cytometry, cytotoxicity assays, cell depletion, cytokine neutralization, and adoptive transfer were used to analyze T cell responses and tumor microenvironment changes.
Main Results:
- LCpG demonstrated rapid transport and prolonged retention in lymphoid nodes compared to unmodified CpG.
- LCpG controlled primary tumor growth and metastasis, establishing long-term memory and activating tumor-specific Tc1 responses.
- LCpG promoted CTL infiltration, M1 macrophage polarization, and Treg regulation in the tumor microenvironment, dependent on CTL-derived IFN-γ.
- Combination therapy with anti-PD-1 significantly enhanced the anti-tumor efficacy of LCpG.
Conclusions:
- LCpG is a promising adjuvant for cancer vaccines, augmenting tumor-specific Tc1 activity and modulating the tumor microenvironment.
- The anti-tumor activity of LCpG is mediated by CTL-derived IFN-γ and is significantly enhanced when combined with anti-PD-1 immunotherapy.
- LCpG represents a novel strategy for improving cancer immunotherapy by enhancing vaccine adjuvant properties and immune cell activation.
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