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Updated: Sep 29, 2025

Murine Model of CD40-activation of B cells
Published on: March 5, 2010
Developing a translational murine-to-canine pathway for an IL-2/agonist anti-CD40 antibody cancer immunotherapy
Stephen Francis Proksch1,2,3, Clinton Petrus Matthysen1,2, John E Jardine4
1Curtin Medical School, Curtin University, Bentley, Western Australia, Australia.
Abstract:
Human and canine sarcomas are difficult to treat soft tissue malignancies with an urgent need for new improved therapeutic options. Local recurrence rates for humans are between 10%-30%, and 30%-40% develop metastases. Outcomes for dogs with sarcoma vary with grade but can be similar. Pet dogs share the human environment and represent human cancer with genetic variation in hosts and tumours. We asked if our murine studies using genetically identical mice and cloned tumour cells were translatable to larger, genetically diverse domestic dogs with naturally occurring tumours, to (i) develop a canine cancer therapeutic, and (ii) to use as a translational pathway to humans. Our murine studies showed that intra-tumoral delivery of interleukin-2 (IL-2) plus an agonist anti-CD40 antibody (Ab) induces long-term curative responses ranging from 30% to 100%, depending on tumour type. We developed an agonist anti-canine-CD40 Ab and conducted a phase I dose finding/toxicology 3 + 3 clinical trial in dogs (n = 27) with soft tissue sarcomas on account of suitability for intratumoral injection and straightforward monitoring. Dogs were treated with IL-2 plus anti-CD40 antibody for 2 weeks. Three dose levels induced tumour regression with minimal side effects, measured by monitoring, haematological and biochemical assays. Importantly, our mouse and canine studies provide encouraging fundamental proof-of-concept data upon which we can develop veterinary and human immunotherapeutic strategies.
Insights
This study explored a new immunotherapy for canine sarcomas, using interleukin-2 (IL-2) and an anti-CD40 antibody. The treatment showed promising tumor regression and minimal side effects in dogs, supporting its potential for both veterinary and human cancer therapies.
Area of Science:
- Immunotherapy
- Comparative Oncology
- Veterinary Medicine
Background:
- Soft tissue sarcomas in humans and dogs are challenging malignancies requiring novel treatments.
- High recurrence and metastasis rates necessitate improved therapeutic strategies.
- Pet dogs offer a valuable model for naturally occurring cancers, aiding translational research.
Purpose of the Study:
- To develop a canine cancer therapeutic using a novel immunotherapy approach.
- To assess the translatability of murine cancer models to naturally occurring canine tumors.
- To establish a translational pathway for human cancer immunotherapy.
Main Methods:
- Intratumoral delivery of interleukin-2 (IL-2) combined with an agonist anti-CD40 antibody.
- Development of an agonist anti-canine-CD40 antibody for clinical use.
- Phase I dose-finding/toxicology study in 27 dogs with soft tissue sarcomas.
Main Results:
- Three dose levels of IL-2 plus anti-canine-CD40 antibody demonstrated tumor regression in dogs.
- The treatment exhibited minimal side effects, assessed via monitoring and laboratory assays.
- Both murine and canine studies provided proof-of-concept for veterinary and human immunotherapeutic strategies.
Conclusions:
- Intratumoral IL-2 and anti-CD40 antibody immunotherapy is a viable strategy for canine soft tissue sarcomas.
- This approach shows potential as a translational pathway for human cancer immunotherapy.
- Further development of these immunotherapeutic strategies is warranted for both species.

