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Combining immune checkpoint inhibitors with denosumab: a new era in repurposing denosumab in oncology?
Maria V Deligiorgi1, Mihalis I Panayiotidis, Dimitrios T Trafalis
1Department of Pharmacology - Clinical Pharmacology Unit, National and Kapodistrian University of Athens, Faculty of Medicine, Building 16, 1st Floor, 75 Mikras Asias, 11527-Goudi, Athens, Greece.
Abstract:
The designation of immune checkpoint inhibitors (ICPi) as scientific breakthrough of the year 2013 marked a turning point in cancer therapeutics, unleashing the host immune system against tumors. ICPi block the cytotoxic T lymphocyte antigen 4 (CTLA-4), the programmed cell death protein (PD) 1 (PD-1), and the ligand of the latter (PD-L1) ‒the landmark immune checkpoints‒abrogating the escape of cancer cells from immunosurveillance. Despite the durable antitumor response elicited by ICPi in an expanding list of cancer types and a substantial fraction of patients, the resistance to this modality ‒primary and acquired‒ has inspired research on combinational regimens to reinvigorate immunosurveillance in immune-refractory tumors. Besides various combinations of ICPi with other ICPi, targeted therapies, chemotherapy, and radiation, emphasis is placed on identification of novel partners of ICPi. Scientists capitalize on repurposing already-approved drugs to overcome τhe diminishing efficiency of commercial drug research and development. Denosumab, a human monoclonal immunoglobulin antibody inhibiting receptor activator of nuclear factor kappa-B ligand (RANKL), is excellent candidate for repurposing in oncology, given its anticancer potential and accepted safety profile. Originally approved as anti-osteoporotic agent inhibiting the osteoclast driven bone resorption, denosumab has demonstrated multifaceted anticancer efficacy, beyond abolishing the osteoclast-dependent RANKL signaling. The present review provides a comprehensive overview of the preclinical and clinical evidence indicating denosumab as effective partner of ICPi, emphasizing the mechanisms underlying the enhanced anticancer efficacy of this combination as compared to monotherapies. Current challenges and future perspectives in incorporating the combination of ICPi with denosumab in clinical practice are discussed.
Insights
Denosumab, an osteoporosis drug, shows promise when combined with immune checkpoint inhibitors (ICPi) for cancer treatment. This combination enhances the immune system
Area of Science:
- Oncology
- Immunotherapy
- Drug Repurposing
Background:
- Immune checkpoint inhibitors (ICPi) revolutionized cancer therapy by activating the immune system against tumors.
- Resistance to ICPi necessitates novel combination strategies to improve efficacy in refractory cancers.
- Repurposing existing drugs offers a viable approach to discover new anti-cancer combinations.
Purpose of the Study:
- To review preclinical and clinical evidence supporting denosumab as a combination partner for ICPi.
- To elucidate the mechanisms behind the enhanced anti-cancer efficacy of the ICPi-denosumab combination.
- To discuss the challenges and future directions for clinical implementation.
Main Methods:
- Comprehensive review of preclinical studies investigating denosumab and ICPi combinations.
- Analysis of clinical trial data evaluating the safety and efficacy of denosumab with ICPi.
- Exploration of the immunological and molecular mechanisms of action.
Main Results:
- Denosumab, originally an anti-osteoporotic agent, exhibits anticancer properties beyond its effect on bone resorption.
- Preclinical and clinical data suggest denosumab enhances the anti-tumor response when combined with ICPi.
- The combination demonstrates improved efficacy compared to monotherapy in various cancer models and patient populations.
Conclusions:
- Denosumab is a promising repurposed drug for combination therapy with ICPi.
- The combination leverages denosumab's multifaceted anti-cancer effects to overcome ICPi resistance.
- Further clinical investigation is warranted to optimize the use of denosumab with ICPi in cancer treatment.
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