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Updated: May 26, 2025

Evaluating the Angiogenetic Properties of Ovarian Cancer Stem-Like Cells using the Three-Dimensional Co-Culture System, NICO-1
Published on: December 5, 2020
Cannabinoids as Promising Inhibitors of HER2-Tyrosine Kinase: A Novel Strategy for Targeting HER2-Positive Ovarian
Thomanai Lamtha1,2, Nathjanan Jongkon3, Tossaporn Lertvanithphol4
1Laboratory of Protein Engineering and Bioinformatics (PROTEP), Department of Biochemistry, Faculty of Science, Kasetsart University, Bangkok 10900, Thailand.
Abstract:
Human epidermal growth factor receptor 2 (HER2) is a transmembrane receptor within the ErbB family that plays a pivotal role in the progression of various aggressive cancers. HER2-positive tumors often develop resistance to standard therapies, necessitating the exploration of innovative treatment options. Cannabinoids, bioactive compounds from Cannabis sativa such as cannabidiol (CBD), cannabigerol (CBG), and cannabinol (CBN), have gained attention for their potential anticancer properties. This study evaluates the efficacy of CBD, CBG, and CBN in targeting HER2-positive ovarian cancer through kinase inhibition assays, surface plasmon resonance (SPR), molecular docking, and cell viability assessments. SPR analysis revealed that cannabinoids bind strongly to HER2-tyrosine kinase (HER2-TK), with CBD showing the highest affinity (K D = 6.16 μM), significantly better than afatinib (K D = 26.30 μM), and CBG demonstrating moderate affinity (K D = 17.07 μM). In kinase inhibition assays, CBG was the most potent inhibitor (IC50 = 24.7 nM), followed by CBD (IC50 = 38 nM), suggesting their ability to disrupt HER2-mediated signaling pathways. Molecular docking studies highlighted critical interactions between cannabinoids and essential HER2 residues (Leu796, Thr862, Asp863). In cell viability assays, CBD and CBG effectively inhibited the growth of HER2-positive SKOV3 cells (IC50 = 13.8 μM and 16.6 μM, respectively), comparable to traditional tyrosine kinase inhibitors. These findings underscore the therapeutic potential of cannabinoids, particularly CBD and CBG, as alternative or adjunct therapies for HER2-positive cancers, with the promise of mitigating resistance and adverse effects associated with existing treatments.
Insights
Cannabinoids like cannabidiol (CBD) and cannabigerol (CBG) show promise in targeting HER2-positive cancers. These compounds effectively inhibit HER2-tyrosine kinase and cancer cell growth, offering potential new therapies.
Area of Science:
- Biochemistry
- Pharmacology
- Oncology
Background:
- Human epidermal growth factor receptor 2 (HER2) is crucial in aggressive cancers.
- HER2-positive tumors often develop treatment resistance.
- Cannabinoids from Cannabis sativa, including CBD, CBG, and CBN, exhibit potential anticancer properties.
Purpose of the Study:
- To evaluate the efficacy of CBD, CBG, and CBN against HER2-positive ovarian cancer.
- To explore cannabinoids as novel therapeutic agents for HER2-driven malignancies.
Main Methods:
- Kinase inhibition assays
- Surface plasmon resonance (SPR) for binding affinity
- Molecular docking simulations
- Cell viability assessments on SKOV3 cells
Main Results:
- CBD and CBG demonstrated strong binding to HER2-tyrosine kinase (HER2-TK).
- CBG and CBD potently inhibited HER2-TK activity (IC50 values in nM range).
- CBD and CBG significantly reduced HER2-positive ovarian cancer cell viability (IC50 values in μM range).
Conclusions:
- Cannabinoids, particularly CBD and CBG, show significant therapeutic potential against HER2-positive cancers.
- These cannabinoids can disrupt HER2-mediated signaling pathways.
- CBD and CBG may serve as alternative or adjunct treatments, potentially overcoming resistance and reducing side effects of current therapies.
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