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Clinical efficacy of anti-programmed death ligand 1 antibody HFC-L1/c4G12 in dogs with malignant tumors: an
Satoshi Takagi1, Michihito Tagawa2, Naoya Maekawa3,4,5
1Laboratory of Small Animal Surgery, School of Veterinary Medicine, Azabu University, Kanagawa, Japan.
Abstract:
Cancer in dogs remains a major challenge in modern veterinary medicine. Immunotherapy using immune checkpoint inhibitors (ICIs) is available for various human tumor types, and recent veterinary clinical studies have shown that ICIs are a promising approach for treating canine cancers. A canine chimeric anti-PD-L1 antibody, c4G12 (HFC-L1), has been investigated for canine cancer immunotherapy; however, its clinical benefits have not been well characterized in tumors other than pulmonary metastatic (stage IV) oral malignant melanoma (OMM). To explore the efficacy and safety of HFC-L1, we conducted a clinical study in dogs with stage I-III OMM or other tumor types (n=12). HFC-L1 treatment at a dose of 5 mg/kg every 2 weeks was well tolerated, and no grade 3 or higher treatment-related adverse events were reported. Among the dogs eligible for response evaluation (n=10), a partial response was observed in one dog with squamous cell carcinoma, resulting in an objective response rate of 10%. In addition, in a dog with ceruminous cell carcinoma, clinical evidence of a tumor response was observed in metastatic lung lesions. Together, these results suggest that the HFC-L1 therapy is applicable for the treatment of various tumor types, although its clinical benefits should be further evaluated in clinical studies involving a larger number of dogs with each tumor type.
Insights
Immune checkpoint inhibitors (ICIs) show promise for canine cancer. A study of HFC-L1 in dogs with various tumors found it safe and well-tolerated, with some positive responses observed.
Area of Science:
- Veterinary oncology
- Immunotherapy
- Canine cancer research
Background:
- Cancer is a significant challenge in veterinary medicine.
- Immune checkpoint inhibitors (ICIs) are effective against human cancers.
- Canine cancer immunotherapy using ICIs shows promise.
Purpose of the Study:
- To evaluate the efficacy and safety of a canine chimeric anti-PD-L1 antibody (HFC-L1).
- To explore HFC-L1's benefits in canine cancers beyond stage IV oral malignant melanoma.
- To assess HFC-L1 in dogs with stage I-III oral malignant melanoma and other tumor types.
Main Methods:
- A clinical study involving 12 dogs with various tumor types.
- HFC-L1 treatment administered at 5 mg/kg every 2 weeks.
- Evaluation of treatment-related adverse events and objective response rate.
Main Results:
- HFC-L1 treatment was well-tolerated, with no grade 3 or higher adverse events.
- One partial response was observed in a dog with squamous cell carcinoma (10% objective response rate).
- Tumor response was noted in metastatic lung lesions of a dog with ceruminous cell carcinoma.
Conclusions:
- HFC-L1 therapy appears applicable for various canine tumor types.
- Further clinical studies with larger cohorts are needed to confirm benefits for specific tumor types.
- HFC-L1 demonstrates safety and potential efficacy in canine cancer immunotherapy.
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