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A 3D Organotypic Melanoma Spheroid Skin Model
Published on: May 18, 2018
Repurposing the serotonin agonist Tegaserod as an anticancer agent in melanoma: molecular mechanisms and clinical
Wei Liu1, Paweł Stachura1, Haifeng C Xu1,2
1Department of Molecular Medicine II, Medical Faculty, Heinrich-Heine-University, Universitätsstraße 1, 40225, Düsseldorf, Germany.
Background:
New therapies are urgently needed in melanoma particularly in late-stage patients not responsive to immunotherapies and kinase inhibitors.
Methods:
Drug screening, IC50 determinations as well as synergy assays were detected by the MTT assay. Apoptosis using Annexin V and 7AAD staining was assessed using flow cytometry. TUNEL staining was performed using immunocytochemistry. Changes in phosphorylation of key molecules in PI3K/Akt/mTOR and other relevant pathways were detected by western blot as well as immunocytochemistry. To assess in vivo anti-tumor activity of Tegaserod, syngeneic intravenous and subcutaneous melanoma xenografts were used. Immunocytochemical staining was performed to detect expression of active Caspase-3, cleaved Caspase 8 and p-S6 in tumors. Evaluation of immune infiltrates was carried out by flow cytometry.
Results:
Using a screen of 770 pharmacologically active and/or FDA approved drugs, we identified Tegaserod (Zelnorm, Zelmac) as a compound with novel anti-cancer activity which induced apoptosis in murine and human malignant melanoma cell lines. Tegaserod (TM) is a serotonin receptor 4 agonist (HTR4) used in the treatment of irritable bowel syndrome (IBS). TM's anti-melanoma apoptosis-inducing effects were uncoupled from serotonin signaling and attributed to PI3K/Akt/mTOR signaling inhibition. Specifically, TM blunted S6 phosphorylation in both BRAFV600E and BRAF wildtype (WT) melanoma cell lines. TM decreased tumor growth and metastases as well as increased survival in an in vivo syngeneic immune-competent model. In vivo, TM also caused tumor cell apoptosis, blunted PI3K/Akt/mTOR signaling and decreased S6 phosphorylation. Furthermore TM decreased the infiltration of immune suppressive regulatory CD4+CD25+ T cells and FOXP3 and ROR-γt positive CD4+ T cells. Importantly, TM synergized with Vemurafenib, the standard of care drug used in patients with late stage disease harboring the BRAFV600E mutation and could be additively or synergistically combined with Cobimetinib in both BRAFV600E and BRAF WT melanoma cell lines in inducing anti-cancer effects.
Conclusion:
Taken together, we have identified a drug with anti-melanoma activity in vitro and in vivo that has the potential to be combined with the standard of care agent Vemurafenib and Cobimetinib in both BRAFV600E and BRAF WT melanoma.
Insights
Tegaserod demonstrates novel anti-melanoma activity by inducing apoptosis and inhibiting PI3K/Akt/mTOR signaling. This drug shows potential for combination therapy with standard treatments like Vemurafenib and Cobimetinib in melanoma patients.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Melanoma, particularly late-stage, requires novel therapies.
- Existing immunotherapies and kinase inhibitors are not effective for all patients.
Purpose of the Study:
- Identify new anti-cancer drugs for melanoma.
- Investigate the mechanism of action of identified drugs.
- Evaluate combination therapies for melanoma treatment.
Main Methods:
- Drug screening of 770 compounds.
- In vitro assays: MTT, flow cytometry (apoptosis), western blot (phosphorylation).
- In vivo studies: melanoma xenografts, immune cell analysis.
Main Results:
- Tegaserod identified as a novel anti-melanoma agent inducing apoptosis.
- Tegaserod inhibits PI3K/Akt/mTOR signaling, independent of serotonin pathways.
- Tegaserod reduced tumor growth, metastasis, and immune suppression in vivo.
- Tegaserod synergized with Vemurafenib and Cobimetinib in melanoma models.
Conclusions:
- Tegaserod exhibits significant in vitro and in vivo anti-melanoma activity.
- Tegaserod has potential for combination therapy with Vemurafenib and Cobimetinib.
- This offers a new therapeutic strategy for BRAF-mutant and wildtype melanoma.
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