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A Combined 3D Tissue Engineered In Vitro/In Silico Lung Tumor Model for Predicting Drug Effectiveness in Specific Mutational Backgrounds
Published on: April 6, 2016
The combination astemizole-gefitinib as a potential therapy for human lung cancer
María de Guadalupe Chávez-López1, Violeta Zúñiga-García1, Elisabeth Hernández-Gallegos1
1Department of Pharmacology, Center for Research and Advanced Studies of the National Polytechnic Institute, Mexico City, Mexico.
Abstract:
Lung cancer is a major cause of cancer mortality. Thus, novel therapies are urgently needed. Repositioning of old drugs is gaining great interest in cancer treatment. Astemizole is an antihistamine proposed to be repositioned for cancer therapy. This drug targets several molecules involved in cancer including histamine receptors, ABC transporters and the potassium channels Eag1 and HERG. Astemizole inhibits the proliferation of different cancer cells including those from cervix, breast, leukemia and liver. Gefitinib is widely used to treat lung cancer; however, no response or drug resistance occurs in many cases. Here, we studied the combined effect of astemizole and gefitinib on the proliferation, survival, apoptosis and gene and protein expression of Eag1 channels in the human lung cancer cell lines A549 and NCI-H1975. Cell proliferation and survival were studied by the MTT method and the colony formation assay, respectively; apoptosis was investigated by flow cytometry. Gene expression was assessed by real-time polymerase chain reaction (RT-PCR), and protein expression was studied by Western blot analysis and immunocytochemistry. We obtained the inhibitory concentrations 20 and 50 (IC20 and IC50, respectively) values for each drug from the cell proliferation experiments. Drug combination at their IC20 had a superior effect by reducing cell proliferation and survival in up to 80% and 100%, respectively. The drugs alone did not affect apoptosis of H1975 cells, but the drug combination at their IC20 increased apoptosis roughly four times in comparison to the effect of the drugs alone. Eag1 mRNA levels and protein expression were decreased by the drug combination in A549 cells, and astemizole induced subcellular localization changes of the channel protein in these cells. Our in vitro studies strongly suggest that the combination astemizole-gefitinib may be a novel and promising therapy for lung cancer patients.
Insights
Combining astemizole and gefitinib shows promise for lung cancer treatment. This drug combination effectively reduced cancer cell proliferation and survival, and increased apoptosis, offering a potential new therapy.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Lung cancer remains a leading cause of cancer mortality, necessitating novel therapeutic strategies.
- Drug repositioning, particularly of existing antihistamines like astemizole, is an emerging approach in cancer treatment.
- Gefitinib is a standard lung cancer therapy, but acquired resistance limits its long-term efficacy.
Purpose of the Study:
- To investigate the combined efficacy of astemizole and gefitinib on human lung cancer cell lines.
- To evaluate the impact of this combination on cancer cell proliferation, survival, apoptosis, and Eag1 channel expression.
- To explore a potential novel therapeutic strategy for lung cancer.
Main Methods:
- Cell proliferation and survival assays (MTT, colony formation).
- Apoptosis analysis via flow cytometry.
- Gene and protein expression analysis of Eag1 channels (RT-PCR, Western blot, immunocytochemistry).
Main Results:
- The combination of astemizole and gefitinib at their IC20 concentrations significantly inhibited cell proliferation (up to 80%) and survival (up to 100%).
- The drug combination markedly increased apoptosis in H1975 cells (approximately fourfold) compared to individual drugs.
- Combined treatment reduced Eag1 mRNA and protein levels in A549 cells, with astemizole inducing changes in channel protein localization.
Conclusions:
- The in vitro combination of astemizole and gefitinib demonstrates potent anti-cancer effects against lung cancer cell lines.
- This combination therapy may overcome gefitinib resistance and offers a promising novel treatment option for lung cancer patients.
- Targeting Eag1 channels appears to be a mechanism involved in the observed anti-cancer activity.
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