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The Clinical Significance of CD73 in Cancer
Niklas Bach1, Riekje Winzer1, Eva Tolosa1
1Department of Immunology, University Medical Center Hamburg-Eppendorf, 20246 Hamburg, Germany.
Abstract:
The search for new and effective treatment targets for cancer immunotherapy is an ongoing challenge. Alongside the more established inhibitory immune checkpoints, a novel potential target is CD73. As one of the key enzymes in the purinergic signalling pathway CD73 is responsible for the generation of immune suppressive adenosine. The expression of CD73 is higher in tumours than in the corresponding healthy tissues and associated with a poor prognosis. CD73, mainly by the production of adenosine, is critical in the suppression of an adequate anti-tumour immune response, but also in promoting cancer cell proliferation, tumour growth, angiogenesis, and metastasis. The upregulation of CD73 and generation of adenosine by tumour or tumour-associated immune cells is a common resistance mechanism to many cancer treatments such as chemotherapy, radiotherapy, targeted therapy, and immunotherapy. Therefore, the inhibition of CD73 represents a new and promising approach to increase therapy efficacy. Several CD73 inhibitors have already been developed and successfully demonstrated anti-cancer activity in preclinical studies. Currently, clinical studies evaluate CD73 inhibitors in different therapy combinations and tumour entities. The initial results suggest that inhibiting CD73 could be an effective option to augment anti-cancer immunotherapeutic strategies. This review provides an overview of the rationale behind the CD73 inhibition in different treatment combinations and the role of CD73 as a prognostic marker.
Insights
CD73, an enzyme generating immune-suppressive adenosine, is a promising cancer immunotherapy target. Inhibiting CD73 may enhance anti-cancer treatments and improve patient prognosis.
Area of Science:
- Immunology
- Oncology
- Biochemistry
Background:
- CD73 is a key enzyme in purinergic signaling, producing immune-suppressive adenosine.
- CD73 expression is elevated in tumors, correlating with poor prognosis and treatment resistance.
- Adenosine produced by CD73 hinders anti-tumor immune responses and promotes cancer progression.
Purpose of the Study:
- To review the rationale for targeting CD73 in cancer immunotherapy.
- To explore CD73 inhibition as a strategy to overcome treatment resistance.
- To discuss the role of CD73 as a prognostic marker in cancer.
Main Methods:
- Literature review of preclinical and clinical studies on CD73 inhibitors.
- Analysis of CD73's role in immune suppression and cancer promotion.
- Examination of CD73's expression patterns and prognostic significance.
Main Results:
- CD73 inhibition demonstrates anti-cancer activity in preclinical models.
- CD73 upregulation is a common resistance mechanism across various cancer therapies.
- Clinical studies are evaluating CD73 inhibitors in combination therapies.
Conclusions:
- Inhibiting CD73 is a promising approach to enhance cancer immunotherapy efficacy.
- CD73 serves as a potential prognostic biomarker in cancer.
- Targeting CD73 may overcome resistance to chemotherapy, radiotherapy, and immunotherapy.
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