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A novel cyclic peptide targeting LAG-3 for cancer immunotherapy by activating antigen-specific CD8+ T cell responses
Wenjie Zhai1, Xiuman Zhou1, Hongfei Wang1
1School of Life Sciences, Zhengzhou University, Zhengzhou 450001, China.
Abstract:
PD-1 and CTLA-4 antibodies offer great hope for cancer immunotherapy. However, many patients are incapable of responding to PD-1 and CTLA-4 blockade and show low response rates due to insufficient immune activation. The combination of checkpoint blockers has been proposed to increase the response rates. Besides, antibody drugs have disadvantages such as inclined to cause immune-related adverse events and infiltration problems. In this study, we developed a cyclic peptide C25 by using Ph.D.-C7C phage display technology targeting LAG-3. As a result, C25 showed a relative high affinity with human LAG-3 protein and could effectively interfere the binding between LAG-3 and HLA-DR (MHC-II). Additionally, C25 could significantly stimulate CD8+ T cell activation in human PBMCs. The results also demonstrated that C25 could inhibit tumor growth of CT26, B16 and B16-OVA bearing mice, and the infiltration of CD8+ T cells was significantly increased while FOXP3+ Tregs significantly decreased in the tumor site. Furthermore, the secretion of IFN-γ by CD8+ T cells in spleen, draining lymph nodes and especially in the tumors was promoted. Simultaneously, we exploited T cells depletion models to study the anti-tumor mechanisms for C25 peptide, and the results combined with MTT assay confirmed that C25 exerted anti-tumor effects via CD8+ T cells but not direct killing. In conclusion, cyclic peptide C25 provides a rationale for targeting the immune checkpoint, by blockade of LAG-3/HLA-DR interaction in order to enhance anti-tumor immunity, and C25 may provide an alternative for cancer immunotherapy besides antibody drugs.
Insights
A novel cyclic peptide, C25, effectively targets the LAG-3 immune checkpoint by blocking LAG-3/HLA-DR interactions. This peptide enhances anti-tumor immunity and T cell activation, offering a promising alternative to antibody-based cancer immunotherapies.
Area of Science:
- Immunology
- Oncology
- Drug Discovery
Background:
- Immune checkpoint inhibitors like PD-1 and CTLA-4 antibodies are vital in cancer immunotherapy.
- Many patients exhibit low response rates to current therapies due to insufficient immune activation.
- Antibody drugs can cause immune-related adverse events and infiltration issues.
Purpose of the Study:
- To develop a novel therapeutic agent targeting the LAG-3 immune checkpoint.
- To evaluate the efficacy of a cyclic peptide, C25, in enhancing anti-tumor immunity.
- To explore C25 as an alternative to antibody-based cancer immunotherapies.
Main Methods:
- Phage display technology (Ph.D.-C7C) was used to develop the cyclic peptide C25 targeting LAG-3.
- Binding affinity of C25 to human LAG-3 and its interference with LAG-3/HLA-DR interaction were assessed.
- In vitro assays with human peripheral blood mononuclear cells (PBMCs) and in vivo studies in tumor-bearing mice were conducted.
Main Results:
- C25 demonstrated high affinity for human LAG-3 and effectively blocked LAG-3/HLA-DR binding.
- C25 significantly stimulated CD8+ T cell activation and IFN-γ secretion.
- C25 inhibited tumor growth in mouse models, increasing CD8+ T cell infiltration and decreasing regulatory T cells (Tregs) at the tumor site.
Conclusions:
- Cyclic peptide C25 is a potent inhibitor of the LAG-3 immune checkpoint.
- C25 enhances anti-tumor immunity through CD8+ T cell activation and modulation of the tumor microenvironment.
- C25 represents a promising alternative therapeutic strategy for cancer immunotherapy.
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