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The Generation of Dual-Targeting Fusion Protein PD-L1/CD47 for the Inhibition of Triple-Negative Breast Cancer
Yanlin Bian1, Tong Lin1, Tanja Jakos1
1Engineering Research Center of Cell & Therapeutic Antibody, Ministry of Education, School of Pharmacy, Shanghai Jiao Tong University, Shanghai 200240, China.
Abstract:
Triple-negative breast cancer (TNBC) is a highly aggressive subset of breast cancer with limited therapeutic options. However, its immune evasion mechanisms, characterized by the over-expression of the immune checkpoint molecules PD-L1 and CD47, can be targeted in order to facilitate cancer elimination by cells of innate and adaptive immunity. In this paper, we describe the design, preparation, and evaluation of three novel dual-targeting fusion proteins that were based on the structure frame of prototype IAB (innate and adaptive dependent bispecific fusion protein) and the "Orcutt-type IgG-scFv" molecular model. Three molecules with different spatial conformations were designed to improve antigen-antibody affinity by the addition of Ag-Ab binding sites from the variable region sequences of the anti-PD-L1 monoclonal antibody (mAb) atezolizumab and CV1, a high-affinity receptor of CD47. The results showed that the best-performing among the three proteins designed in this study was protein Pro3; its CV1 N-terminus and Fc domain C-terminus were not sterically hindered. Pro3 was better at boosting T cell proliferation and the engulfment of macrophages than the IAB prototype and, at the same time, retained a level of ADCC activity similar to that of IAB. Through improved design, the novel constructed dual-targeting immunomodulatory protein Pro3 was superior at activating the anti-tumor immune response and has thus shown potential for use in clinical applications.
Insights
Researchers developed novel dual-targeting fusion proteins to combat triple-negative breast cancer (TNBC). Protein Pro3 effectively boosted immune cell activity against cancer, showing promise for clinical applications in treating this aggressive disease.
Area of Science:
- Immunology
- Oncology
- Biotechnology
Background:
- Triple-negative breast cancer (TNBC) is aggressive with limited treatment options.
- TNBC evades the immune system via PD-L1 and CD47 overexpression.
- Targeting immune checkpoints offers a therapeutic strategy for TNBC.
Purpose of the Study:
- To design and evaluate novel dual-targeting fusion proteins against PD-L1 and CD47 in TNBC.
- To improve upon the innate and adaptive dependent bispecific fusion protein (IAB) prototype.
- To enhance anti-tumor immune responses for potential clinical application.
Main Methods:
- Designed three novel fusion proteins based on the IAB and Orcutt-type IgG-scFv models.
- Incorporated variable region sequences from anti-PD-L1 (atezolizumab) and anti-CD47 (CV1) antibodies.
- Evaluated protein performance, including antigen-antibody affinity, T cell proliferation, macrophage engulfment, and ADCC activity.
Main Results:
- Protein Pro3 demonstrated superior performance among the three novel designs.
- Pro3 enhanced T cell proliferation and macrophage engulfment compared to the IAB prototype.
- Pro3 maintained similar antibody-dependent cellular cytotoxicity (ADCC) activity as the IAB prototype.
Conclusions:
- The novel dual-targeting immunomodulatory protein Pro3 effectively activates anti-tumor immunity.
- Pro3's improved design overcomes steric hindrance, enhancing its therapeutic potential.
- Pro3 shows significant promise for clinical applications in treating triple-negative breast cancer.
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