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Circumvention of Gefitinib Resistance by Repurposing Flunarizine via Histone Deacetylase Inhibition
Kenneth K W To1, James C H Chow2, Ka-Man Cheung2
1School of Pharmacy, Faculty of Medicine, The Chinese University of Hong Kong, Hong Kong, SAR, China.
Abstract:
Gefitinib is an epidermal growth factor receptor tyrosine kinase inhibitor (EGFR TKI) for treating advanced non-small cell lung cancer (NSCLC). However, drug resistance seriously impedes the clinical efficacy of gefitinib. This study investigated the repositioning of the non-oncology drug capable of inhibiting histone deacetylases (HDACs) to overcome gefitinib resistance. A few drug candidates were identified using the in silico repurposing tool "DRUGSURV" and tested for HDAC inhibition. Flunarizine, originally indicated for migraine prophylaxis and vertigo treatment, was selected for detailed investigation in NSCLC cell lines harboring a range of different gefitinib resistance mechanisms (EGFR T790M, KRAS G12S, MET amplification, or PTEN loss). The circumvention of gefitinib resistance by flunarizine was further demonstrated in an EGFR TKI (erlotinib)-refractory patient-derived tumor xenograft (PDX) model in vivo. The acetylation level of cellular histone protein was increased by flunarizine in a concentration- and time-dependent manner. Among the NSCLC cell lines evaluated, the extent of gefitinib resistance circumvention by flunarizine was found to be the most pronounced in EGFR T790M-bearing H1975 cells. The gefitinib-flunarizine combination was shown to induce the apoptotic protein Bim but reduce the antiapoptotic protein Bcl-2, which apparently circumvented gefitinib resistance. The induction of Bim by flunarizine was accompanied by an increase in the histone acetylation and E2F1 interaction with the BIM gene promoter. Flunarizine was also found to upregulate E-cadherin but downregulate the vimentin expression, which subsequently inhibited cancer cell migration and invasion. Importantly, flunarizine was also shown to significantly potentiate the tumor growth suppressive effect of gefitinib in EGFR TKI-refractory PDX in vivo. The findings advocate for the translational application of flunarizine to circumvent gefitinib resistance in the clinic.
Insights
Repurposing flunarizine, a non-oncology drug, overcomes gefitinib resistance in non-small cell lung cancer (NSCLC) by inhibiting histone deacetylases (HDACs). This combination therapy shows promise for improving gefitinib efficacy in resistant NSCLC tumors.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Gefitinib, an EGFR TKI, treats advanced NSCLC but faces drug resistance.
- Drug resistance mechanisms include EGFR T790M, KRAS G12S, MET amplification, and PTEN loss.
- Histone deacetylase (HDAC) inhibitors offer a potential strategy to overcome gefitinib resistance.
Purpose of the Study:
- To investigate the drug repositioning of HDAC inhibitors for overcoming gefitinib resistance in NSCLC.
- To evaluate flunarizine, a non-oncology drug, as a potential agent to circumvent gefitinib resistance.
Main Methods:
- In silico drug repurposing using "DRUGSURV" to identify HDAC inhibitors.
- In vitro testing of drug candidates in NSCLC cell lines with various resistance mechanisms.
- In vivo validation using an EGFR TKI-refractory patient-derived tumor xenograft (PDX) model.
- Analysis of histone acetylation, apoptosis-related proteins (Bim, Bcl-2), and epithelial-mesenchymal transition markers (E-cadherin, vimentin).
Main Results:
- Flunarizine demonstrated HDAC inhibition and effectively circumvented gefitinib resistance in NSCLC cell lines, particularly those with EGFR T790M mutation.
- Combination of gefitinib and flunarizine induced apoptosis by upregulating Bim and downregulating Bcl-2.
- Flunarizine increased histone acetylation and E2F1 interaction with the BIM promoter.
- Flunarizine inhibited cancer cell migration and invasion by upregulating E-cadherin and downregulating vimentin.
- In vivo studies confirmed that flunarizine potentiated gefitinib's tumor growth suppressive effects in EGFR TKI-refractory PDX models.
Conclusions:
- Flunarizine is a promising repurposed drug for overcoming gefitinib resistance in NSCLC.
- The combination of gefitinib and flunarizine offers a potential therapeutic strategy for resistant NSCLC.
- Further clinical translation of flunarizine for gefitinib-resistant NSCLC is warranted.
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