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The Endocannabinoid System as a Target in Cancer Diseases: Are We There Yet?
Estefanía Moreno1,2, Milena Cavic3, Ana Krivokuca3
1Department of Biochemistry and Molecular Biomedicine, Faculty of Biology, Institute of Biomedicine (IBUB), University of Barcelona, Barcelona, Spain.
Abstract:
The endocannabinoid system (ECS) has been placed in the anti-cancer spotlight in the last decade. The immense data load published on its dual role in both tumorigenesis and inhibition of tumor growth and metastatic spread has transformed the cannabinoid receptors CB1 (CB1R) and CB2 (CB2R), and other members of the endocannabinoid-like system, into attractive new targets for the treatment of various cancer subtypes. Although the clinical use of cannabinoids has been extensively documented in the palliative setting, clinical trials on their application as anti-cancer drugs are still ongoing. As drug repurposing is significantly faster and more economical than de novo introduction of a new drug into the clinic, there is hope that the existing pharmacokinetic and safety data on the ECS ligands will contribute to their successful translation into oncological healthcare. CB1R and CB2R are members of a large family of membrane proteins called G protein-coupled receptors (GPCR). GPCRs can form homodimers, heterodimers and higher order oligomers with other GPCRs or non-GPCRs. Currently, several CB1R and CB2R-containing heteromers have been reported and, in cancer cells, CB2R form heteromers with the G protein-coupled chemokine receptor CXCR4, the G protein-coupled receptor 55 (GPR55) and the tyrosine kinase receptor (TKR) human V-Erb-B2 Avian Erythroblastic Leukemia Viral Oncogene Homolog 2 (HER2). These protein complexes possess unique pharmacological and signaling properties, and their modulation might affect the antitumoral activity of the ECS. This review will explore the potential of the endocannabinoid network in the anti-cancer setting as well as the clinical and ethical pitfalls behind it, and will develop on the value of cannabinoid receptor heteromers as potential new targets for anti-cancer therapies and as prognostic biomarkers.
Insights
The endocannabinoid system (ECS) shows dual roles in cancer, offering new therapeutic targets like cannabinoid receptors (CB1R, CB2R). Research explores ECS ligands and receptor heteromers for novel anti-cancer strategies.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- The endocannabinoid system (ECS) is increasingly recognized for its complex role in cancer, influencing both tumor growth and metastasis.
- Cannabinoid receptors (CB1R and CB2R) and related molecules are emerging as promising targets for anti-cancer drug development.
- Existing data on ECS ligands offers potential for faster drug repurposing in oncology.
Purpose of the Study:
- To review the potential of the endocannabinoid network in cancer treatment.
- To examine the clinical and ethical considerations of using cannabinoids in oncology.
- To explore cannabinoid receptor heteromers as novel anti-cancer therapeutic targets and prognostic biomarkers.
Main Methods:
- Literature review of studies on the endocannabinoid system and cancer.
- Analysis of research on cannabinoid receptors (CB1R, CB2R) and their heteromers.
- Exploration of G protein-coupled receptors (GPCRs) and tyrosine kinase receptors (TKRs) in cancer cell signaling.
Main Results:
- The ECS exhibits a dual role in cancer, with potential for both promoting and inhibiting tumor progression.
- CB1R and CB2R form heteromers with other receptors (e.g., CXCR4, GPR55, HER2) in cancer cells, possessing unique signaling properties.
- Modulation of these heteromers may impact anti-tumoral activity.
Conclusions:
- The endocannabinoid network presents significant potential for anti-cancer therapies.
- Cannabinoid receptor heteromers represent promising novel targets for cancer treatment and prognosis.
- Further clinical trials are needed to establish the efficacy and safety of cannabinoids as anti-cancer agents.
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