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Updated: Jan 5, 2026

HPLC-based Assay to Monitor Extracellular Nucleotide/Nucleoside Metabolism in Human Chronic Lymphocytic Leukemia Cells
Published on: July 20, 2016
Monitoring and characterizing soluble and membrane-bound ectonucleotidases CD73 and CD39
1Department of Cell Signaling, Research and Development, Promega Corp. Madison, WI, United States of America.
Abstract:
The success of immunotherapy treatment in oncology ushered a new modality for treating a wide variety of cancers. However, lack of effect in some patients made it imperative to identify other pathways that are exploited by cancer cells to circumvent immune surveillance, and possibly synergize immune checkpoint treatment in those cases. It has been recently recognized that adenosine levels increase significantly in the tumor microenvironment and that adenosine/adenosine receptors play a powerful role as immunosuppressive and attenuating several effector T cell functions. The two main enzymes responsible for generating adenosine in the microenvironment are the ectonucleotidases CD39 and CD73, the former utilizes both ATP and ADP and produces AMP while the latter utilizes AMP and generates adenosine. Thus, these two enzymes combined are the major source for the bulk of adenosine produced in the microenvironment. They were shown to be validated targets in oncology leading to several clinical trials that include small molecules as well as antibodies, showing positive and encouraging results in the preclinical arena. Towards the development of novel drugs to target these enzymes, we have developed a platform that can be utilized to monitor the activities of both enzymes in vitro (biochemical) as well as in cells (cell based) assays. We have developed very sensitive and homogenous assays that enabled us to monitor the activity of both enzymes and demonstrate selectivity of known inhibitors as well as monoclonal antibodies. This should speed up screening for novel inhibitors that might lead to more effective cancer therapy.
Insights
New assays can monitor CD39 and CD73 enzyme activity, crucial for adenosine production in tumors. This aids in developing novel cancer therapies targeting these immunosuppressive pathways.
Area of Science:
- Oncology
- Immunology
- Biochemistry
Background:
- Immunotherapy is a cancer treatment, but not all patients respond.
- Cancer cells exploit pathways to evade immune surveillance.
- Adenosine in the tumor microenvironment suppresses T cell function.
Purpose of the Study:
- Identify pathways exploited by cancer cells.
- Develop novel drugs targeting CD39 and CD73 enzymes.
- Create a platform to monitor enzyme activity for drug development.
Main Methods:
- Developed sensitive and homogenous biochemical and cell-based assays.
- Monitored the activities of CD39 and CD73.
- Demonstrated selectivity of known inhibitors and monoclonal antibodies.
Main Results:
- Established a platform for monitoring CD39 and CD73 activity.
- Validated the sensitivity and homogeneity of the assays.
- Showcased the ability to assess inhibitor and antibody selectivity.
Conclusions:
- The developed platform can accelerate the screening of novel inhibitors.
- This technology may lead to more effective cancer therapies targeting the adenosine pathway.

