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Niclosamide and Palbociclib Act Synergistically to Reduce Cholangiocarcinoma Cell Viability In Vitro and Inhibit
Grace Martin1, Ka Ying Lee2, Christopher Roberts1
1School of Medicine and Biodiscovery Institute, University of Nottingham, Nottingham NG7 2RD, UK.
Abstract:
Background: Despite the emergence of new treatment modalities, including targeted therapies that are of benefit to patients whose tumours carry specific mutations, the prognosis for most patients with cholangiocarcinoma remains poor. Novel therapeutic approaches that can benefit the majority of patients whose tumour cells do not carry targetable mutations are urgently needed. Results: To identify mutation-agnostic treatment approaches, we screened a library of well-tolerated off-patent drugs against cholangiocarcinoma cells and normal biliary epithelial cells. The screen identified Niclosamide as a drug that reduces the viability of multiple cholangiocarcinoma cell lines but has a lesser effect on normal primary biliary epithelial cells. Moreover, Niclosamide treatment reduces the growth of cholangiocarcinoma tumour cells as tumour spheroids in vitro and reduces the growth of cholangiocarcinoma cells as tumours in a xenograft mouse model of this disease. Through a proteasome-dependent mechanism, Niclosamide treatment reduces the expression of the Proline-Rich Homeodomain (PRH) protein, a transcription factor which acts as an oncoprotein in cholangiocarcinoma cells. However, PRH knockout does not alter the sensitivity of cholangiocarcinoma cells to Niclosamide, indicating that this drug is not dependent on PRH to reduce cell viability. Interestingly, the CDK4/6 kinase inhibitor Palbociclib selectively reduces the viability of cholangiocarcinoma cell lines compared to normal biliary epithelial cells and, importantly, Palbociclib synergises with Niclosamide to reduce cholangiocarcinoma cell viability in vitro as well as to reduce tumour growth in a mouse xenograft model. Conclusion: These preclinical results suggest that the combination of Niclosamide and an inhibitor of CDK4/6 is worthy of clinical evaluation as a potential treatment for this disease.
Insights
Researchers identified Niclosamide as a promising drug for cholangiocarcinoma treatment. This drug, combined with a CDK4/6 inhibitor, effectively reduced cancer cell viability and tumor growth in preclinical models.
Area of Science:
- Oncology
- Drug Discovery
- Molecular Biology
Background:
- Cholangiocarcinoma (bile duct cancer) has a poor prognosis, with limited treatment options for most patients.
- Targeted therapies are effective only for a subset of patients with specific tumor mutations.
- Novel, mutation-agnostic therapeutic strategies are urgently needed for cholangiocarcinoma.
Purpose of the Study:
- To identify mutation-agnostic treatment approaches for cholangiocarcinoma.
- To screen off-patent drugs for efficacy against cholangiocarcinoma cells.
- To evaluate novel drug combinations for enhanced therapeutic effects.
Main Methods:
- Screening of well-tolerated off-patent drugs against cholangiocarcinoma and normal biliary cells.
- In vitro assessment of drug effects on cell viability and tumor spheroids.
- In vivo evaluation using a xenograft mouse model of cholangiocarcinoma.
- Investigation of drug mechanisms, including proteasome-dependent pathways and protein expression (PRH).
Main Results:
- Niclosamide demonstrated selective toxicity towards cholangiocarcinoma cells with minimal impact on normal biliary cells.
- Niclosamide reduced cholangiocarcinoma cell viability in vitro, in tumor spheroids, and in a xenograft mouse model.
- Niclosamide reduces Proline-Rich Homeodomain (PRH) oncoprotein expression via a proteasome-dependent mechanism.
- The CDK4/6 inhibitor Palbociclib selectively reduced cholangiocarcinoma cell viability and synergized with Niclosamide.
- The combination of Niclosamide and Palbociclib significantly reduced tumor growth in vivo.
Conclusions:
- Niclosamide is a potential mutation-agnostic therapeutic agent for cholangiocarcinoma.
- The combination of Niclosamide and a CDK4/6 inhibitor shows significant preclinical efficacy.
- This drug combination warrants clinical evaluation for the treatment of cholangiocarcinoma.
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