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Published on: March 30, 2018
Eradication of Canine Diffuse Large B-Cell Lymphoma in a Murine Xenograft Model with CD47 Blockade and Anti-CD20
Kipp Weiskopf1,2,3, Katie L Anderson4,5,6, Daisuke Ito4,5,6
1Institute for Stem Cell Biology and Regenerative Medicine, Stanford University School of Medicine, Stanford, California. modiano@umn.edu kweiskopf@bwh.harvard.edu.
Abstract:
Cancer immunotherapies hold much promise, but their potential in veterinary settings has not yet been fully appreciated. Canine lymphomas are among the most common tumors of dogs and bear remarkable similarity to human disease. In this study, we examined the combination of CD47 blockade with anti-CD20 passive immunotherapy for canine lymphoma. The CD47/SIRPα axis is an immune checkpoint that regulates macrophage activation. In humans, CD47 is expressed on cancer cells and enables evasion from phagocytosis. CD47-blocking therapies are now under investigation in clinical trials for a variety of human cancers. We found the canine CD47/SIRPα axis to be conserved biochemically and functionally. We identified high-affinity SIRPα variants that antagonize canine CD47 and stimulate phagocytosis of canine cancer cells in vitro When tested as Fc fusion proteins, these therapeutic agents exhibited single-agent efficacy in a mouse xenograft model of canine lymphoma. As robust synergy between CD47 blockade and tumor-specific antibodies has been demonstrated for human cancer, we evaluated the combination of CD47 blockade with 1E4-cIgGB, a canine-specific antibody to CD20. 1E4-cIgGB could elicit a therapeutic response against canine lymphoma in vivo as a single agent. However, augmented responses were observed when combined with CD47-blocking therapies, resulting in synergy in vitro and in vivo and eliciting cures in 100% of mice bearing canine lymphoma. Our findings support further testing of CD47-blocking therapies alone and in combination with CD20 antibodies in the veterinary setting. Cancer Immunol Res; 4(12); 1072-87. ©2016 AACR.
Insights
Combining CD47 blockade with anti-CD20 immunotherapy shows significant promise for treating canine lymphoma. This combination therapy achieved complete cures in preclinical models, highlighting its potential for veterinary cancer treatment.
Area of Science:
- Veterinary oncology
- Immunotherapy
- Cancer immunology
Background:
- Canine lymphomas are common and similar to human lymphomas.
- Cancer immunotherapies show promise but are underutilized in veterinary medicine.
- The CD47/SIRPα axis is an immune checkpoint exploited by cancer cells to evade phagocytosis.
Purpose of the Study:
- To investigate the combination of CD47 blockade and anti-CD20 immunotherapy for canine lymphoma.
- To assess the efficacy and synergy of this combined approach in preclinical models.
Main Methods:
- Identified SIRPα variants that antagonize canine CD47 and promote phagocytosis.
- Tested CD47-blocking Fc fusion proteins and a canine-specific anti-CD20 antibody (1E4-cIgGB).
- Evaluated single-agent and combination therapies in vitro and in a mouse xenograft model of canine lymphoma.
Main Results:
- Canine CD47/SIRPα axis is conserved and functionally similar to humans.
- CD47-blocking agents showed single-agent efficacy.
- Combination therapy with CD47 blockade and anti-CD20 antibody demonstrated synergy.
- 100% cure rate was achieved in mice with canine lymphoma using the combination therapy.
Conclusions:
- CD47-blocking therapies are effective alone and in combination for canine lymphoma.
- The combination of CD47 blockade and anti-CD20 antibodies shows significant therapeutic potential in veterinary settings.
- Further clinical testing of these immunotherapies in dogs is warranted.

