Bispecific Antibody Approach for Improved Melanoma-Selective PD-L1 Immune Checkpoint Blockade
Iris Koopmans1, Mark A J M Hendriks1, Robert J van Ginkel1
1University of Groningen, University Medical Center Groningen, Department of Surgery, Laboratory for Translational Surgical Oncology, Groningen, The Netherlands.
Abstract:
Reactivation of functionally-impaired anticancer T cells by programmed cell death protein 1 (PD-1) and programmed cell death receptor ligand-1 (PD-L1)-blocking antibodies shows prominent therapeutic benefit in advanced melanoma and patients with non-small cell lung cancer. However, current PD-L1-blocking antibodies lack intrinsic tumor selectivity. Therefore, efficacy may be reduced resulting from on-target and off-tumor binding to PD-L1-expressing normal cells. This may lead to indiscriminate activation of antigen-experienced T cells, including those implicated in autoimmune-related adverse events. To direct PD-L1 blockade to chondroitin sulfate proteoglycan 4 (CSPG4)-expressing cancers and to reactivate anticancer T cells more selectively, we constructed bispecific antibody PD-L1xCSPG4. CSPG4 is an established target antigen that is selectively overexpressed on malignant melanoma and various other difficult-to-treat cancers. PD-L1xCSPG4 showed enhanced capacity for CSPG4-directed blockade of PD-L1 on cancer cells. Importantly, treatment of mixed cultures containing primary patient-derived CSPG4-expressing melanoma cells and autologous tumor-infiltrating lymphocytes with PD-L1xCSPG4 significantly enhanced activation status, IFN-γ production, and cytolytic activity of anticancer T cells. In conclusion, tumor-directed blockade of PD-L1 by PD-L1xCSPG4 may improve efficacy and safety of PD-1/PD-L1 checkpoint blockade for treatment of melanoma and other CSPG4-overexpressing malignancies.
Insights
A novel bispecific antibody, PD-L1xCSPG4, targets programmed cell death ligand-1 (PD-L1) on cancers expressing chondroitin sulfate proteoglycan 4 (CSPG4). This enhances T cell activation and anti-tumor activity, potentially improving cancer immunotherapy safety and efficacy.
Area of Science:
- Immunology
- Oncology
- Biotechnology
Background:
- Programmed cell death protein 1 (PD-1) and programmed cell death receptor ligand-1 (PD-L1) checkpoint blockade enhances anti-tumor T cell responses.
- Current PD-L1 antibodies lack tumor selectivity, causing off-tumor binding and potential autoimmune adverse events.
Purpose of the Study:
- To develop a bispecific antibody, PD-L1xCSPG4, for targeted PD-L1 blockade on chondroitin sulfate proteoglycan 4 (CSPG4)-expressing cancers.
- To enhance selective reactivation of anti-cancer T cells.
Main Methods:
- Construction of the bispecific antibody PD-L1xCSPG4.
- Treatment of mixed cultures of patient-derived melanoma cells and autologous tumor-infiltrating lymphocytes with PD-L1xCSPG4.
Main Results:
- PD-L1xCSPG4 demonstrated enhanced CSPG4-directed blockade of PD-L1 on cancer cells.
- Treatment significantly increased T cell activation status, interferon-gamma (IFN-γ) production, and cytolytic activity.
Conclusions:
- Tumor-directed PD-L1 blockade via PD-L1xCSPG4 offers a strategy to improve the efficacy and safety of PD-1/PD-L1 checkpoint blockade.
- This approach holds promise for treating melanoma and other CSPG4-overexpressing malignancies.
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