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Identifying PD-1/PD-L1 Inhibitors with Surface Plasmon Resonance Technology
Published on: May 2, 2025
Nanobody-based canine PD-L1-targeting immune checkpoint inhibitors for cancer therapy in dogs
Morgane Di Palma Subran1, Marianne Wyss2, Betül Taskoparan3
1Aix Marseille Univ, CNRS, INSERM, Institut Paoli-Calmettes, CRCM, Marseille, France.
Abstract:
Although the demand for novel immunotherapies to treat companion dogs with spontaneously developing cancer is increasing in high-income countries, most options remain inaccessible. Dogs host a complete and functional immune system reacting to the presence of their tumor. As for humans, many canine neoplasms were shown to overexpress programmed death-ligand 1 (PD-L1), an immune checkpoint inhibitor (ICI) known to downregulate cytotoxic T cell activity upon interaction with its ligand PD-1. In this study, we used alpaca-derived single domain antibodies (sdAbs), also known as nanobodies (Nbs), to develop new ICI targeting canine PD-L1. We selected several clones binding to both recombinant soluble and cell membrane-anchored cPD-L1 forms. Next, their cPD-L1-binding affinities, cPD-1/cPD-L1-blocking abilities and epitope relationships were determined. Most effective Nbs binding to non-overlapping epitopes were combined as biparatopic Fc fusions to provide additional functionalities and improve their efficacy. Remarkably, all engineered Nb constructs efficiently interfered with the cPD-1/cPD-L1-induced signaling pathway, with some multivalent molecules displaying inhibitory concentrations reaching low picomolar range. Moreover, Fc-competent Nb constructs were also shown to induce tumor cell death by antibody-dependent cell-mediated cytotoxicity using human or canine models. Finally, using donor canine peripheral blood mononuclear cells (PBMCs), best candidates were favorably compared with atezolizumab in a Staphylococcal enterotoxin B (SEB)-based interferon-γ (IFNγ) secretion assay.
Insights
Researchers developed novel canine cancer immunotherapies using alpaca nanobodies targeting programmed death-ligand 1 (PD-L1). These nanobodies effectively block immune checkpoints and show potential for treating canine neoplasms.
Area of Science:
- Veterinary Medicine
- Immunology
- Oncology
Background:
- Growing demand for companion dog cancer immunotherapies.
- Canine tumors often overexpress PD-L1, inhibiting anti-tumor T cell responses.
- Existing immunotherapies are often inaccessible to dogs.
Purpose of the Study:
- To develop novel immune checkpoint inhibitors (ICIs) targeting canine PD-L1.
- To engineer alpaca-derived single domain antibodies (nanobodies) for canine cancer treatment.
- To assess the efficacy and functionality of these nanobodies in preclinical models.
Main Methods:
- Selection and characterization of nanobodies binding to canine PD-L1.
- Engineering biparatopic Fc fusions of nanobodies.
- Assessing inhibition of PD-1/PD-L1 signaling and antibody-dependent cell-mediated cytotoxicity (ADCC).
- Comparison with atezolizumab in canine peripheral blood mononuclear cell assays.
Main Results:
- Selected nanobodies demonstrated high binding affinity to canine PD-L1.
- Engineered nanobody constructs effectively inhibited PD-1/PD-L1 signaling, with low picomolar inhibitory concentrations.
- Fc-competent nanobodies induced tumor cell death via ADCC.
- Best candidates showed favorable comparison to atezolizumab in IFN-γ secretion assays.
Conclusions:
- Alpaca-derived nanobodies are effective tools for developing canine PD-L1-targeted immunotherapies.
- Engineered nanobody constructs show significant potential for treating canine cancers.
- These novel therapies offer a promising avenue for improving canine cancer treatment accessibility and efficacy.
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