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The ectonucleotidases <scp>CD</scp>39 and <scp>CD</scp>73: Novel checkpoint inhibitor targets

Immunological Reviews · 2017 · Vol. 276(1) · pp. 121–144
Bertrand AllardMaria Serena LonghiSimon C. RobsonJohn Stagg

Abstract

Cancers are able to grow by subverting immune suppressive pathways, to prevent the malignant cells as being recognized as dangerous or foreign. This mechanism prevents the cancer from being eliminated by the immune system and allows disease to progress from a very early stage to a lethal state. Immunotherapies are newly developing interventions that modify the patient's immune system to fight cancer, by either directly stimulating rejection-type processes or blocking suppressive pathways. Extracellular adenosine generated by the ectonucleotidases CD39 and CD73 is a newly recognized "immune checkpoint mediator" that interferes with anti-tumor immune responses. In this review, we focus on CD39 and CD73 ectoenzymes and encompass aspects of the biochemistry of these molecules as well as detailing the distribution and function on immune cells. Effects of CD39 and CD73 inhibition in preclinical and clinical studies are discussed. Finally, we provide insights into potential clinical application of adenosinergic and other purinergic-targeting therapies and forecast how these might develop in combination with other anti-cancer modalities.

Adenosine and Purinergic SignalingPeptidase Inhibition and AnalysisMXene and MAX Phase MaterialsImmune systemAdenosinergicImmunologyCancerPurinergic receptorImmune checkpointCancer researchCancer immunotherapyBiologyImmunotherapy

MeSH terms

AnimalsAntibodies, MonoclonalApyraseClinical Trials as TopicCombined Modality TherapyDrug Evaluation, PreclinicalHumansImmunotherapyNeoplasmsAntigens, CD5'-NucleotidaseTumor EscapeGPI-Linked ProteinsTumor Microenvironment

Funding

  • Leona M. and Harry B. Helmsley Charitable Trust
  • Leukemia and Lymphoma Society of Canada
  • Terry Fox Research Institute
  • National Institutes of Health
Citations
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Regulatory T cells and Foxp3
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Annual Review of Immunology · 2012 · 3,154 citations
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