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Published on: July 20, 2016
A Novel Antagonistic CD73 Antibody for Inhibition of the Immunosuppressive Adenosine Pathway
Melanie Wurm1, Otmar Schaaf2, Katharina Reutner3
1Boehringer Ingelheim RCV, GmbH & Co KG, Cancer Pharmacology and Disease Positioning, Vienna, Austria.
Abstract:
Despite some impressive clinical results with immune checkpoint inhibitors, the majority of patients with cancer do not respond to these agents, in part due to immunosuppressive mechanisms in the tumor microenvironment. High levels of adenosine in tumors can suppress immune cell function, and strategies to target the pathway involved in its production have emerged. CD73 is a key enzyme involved in adenosine production. This led us to identify a novel humanized antagonistic CD73 antibody, mAb19, with distinct binding properties. mAb19 potently inhibits the enzymatic activity of CD73 in vitro, resulting in an inhibition of adenosine formation and enhanced T-cell activation. We then investigated the therapeutic potential of combining CD73 antagonism with other immune modulatory and chemotherapeutic agents. Combination of mAb19 with a PD-1 inhibitor increased T-cell activation in vitro Interestingly, this effect could be further enhanced with an agonist of the adenosine receptor ADORA3. Adenosine levels were found to be elevated upon doxorubicin treatment in vivo, which could be blocked by CD73 inhibition. Combining CD73 antagonism with doxorubicin resulted in superior responses in vivo Furthermore, a retrospective analysis of rectal cancer patient samples demonstrated an upregulation of the adenosine pathway upon chemoradiation, providing further rationale for combining CD73 inhibition with chemotherapeutic agents.This study demonstrates the ability of a novel CD73 antibody to enhance T-cell function through the potent suppression of adenosine levels. In addition, the data highlight combination opportunities with standard of care therapies as well as with an ADORA3 receptor agonist to treat patients with solid tumors.
Insights
A novel CD73 antibody, mAb19, effectively inhibits adenosine production, enhancing T-cell activation. This approach shows promise when combined with PD-1 inhibitors or chemotherapy for treating solid tumors.
Area of Science:
- Immunology
- Oncology
- Pharmacology
Background:
- Immune checkpoint inhibitors show limited efficacy in many cancer patients due to immunosuppressive tumor microenvironments.
- High adenosine levels in tumors suppress immune cell function, presenting a therapeutic target.
- CD73 is a critical enzyme in adenosine production within the tumor microenvironment.
Purpose of the Study:
- To identify and characterize a novel humanized antagonistic CD73 antibody, mAb19.
- To evaluate the therapeutic potential of mAb19, alone and in combination with other agents, for cancer treatment.
Main Methods:
- In vitro enzymatic inhibition assays of CD73 by mAb19.
- Assessment of T-cell activation in response to CD73 inhibition.
- In vivo studies combining mAb19 with doxorubicin and PD-1 inhibitors.
- Retrospective analysis of adenosine pathway markers in rectal cancer patient samples.
Main Results:
- mAb19 potently inhibits CD73 enzymatic activity, reducing adenosine formation and enhancing T-cell activation in vitro.
- Combination of mAb19 with a PD-1 inhibitor further increased T-cell activation.
- Combining mAb19 with doxorubicin demonstrated superior anti-tumor responses in vivo.
- Adenosine pathway was upregulated in rectal cancer patients post-chemoradiation.
Conclusions:
- The novel CD73 antibody mAb19 effectively suppresses adenosine levels, enhancing anti-tumor T-cell function.
- CD73 antagonism presents a viable strategy for combination therapy with immune checkpoint inhibitors, chemotherapy, or ADORA3 agonists.
- These findings support the clinical investigation of mAb19 for solid tumor treatment.

