Related Experiment Video
Updated: Jul 9, 2026

Establishment and Characterization of Three Afatinib-resistant Lung Adenocarcinoma PC-9 Cell Lines Developed with Increasing Doses of Afatinib
Published on: June 26, 2019
Development of Ad-mda7/IL-24-resistant lung cancer cell lines
Abujiang Pataer1, Sunil Chada, Jack A Roth
1Department of Thoracic and Cardiovascular Surgery, The University of Texas MD Anderson Cancer Center, Houston, Texas 77030, USA. apataer@mdanderson.org
Abstract:
Many cancers can become resistant to repeated administration of even the most effective therapeutic agents. In developing adenoviral mda-7/IL-24 (Ad-mda-7/IL-24) therapy for lung cancer, we have anticipated this potential clinical problem by attempting to identify the molecular mechanisms of Ad-mda7/IL-24 resistance in several Ad-mda7/IL-24-resistant lung cancer cell lines that we have developed. For the present study, we established four Admda7- resistant cell lines by repeated selection of resistant clones of parental Ad-mda7-sensitive A549 cells: two lines (A549R1 and A549R2) resistant to both adenoviral vector and the mda-7 gene and two (A549R3 and A549R4) resistant to the therapeutic mda-7 gene only. As shown by western blot analysis of several known anti-apoptotic proteins, parental A549 and resistant A549R3 cells expressed similar levels of AKT and phosphorylated AKT (p-AKT), whereas resistant A549R3 and A549R4 cells expressed higher levels of bcl-2 and lower levels of bcl-xL than did their parental cells. As shown by flow-cytometric analysis, treating resistant A549R3 and A549R4 cells with a combination of Ad-mda7 and 17-allyl-amino-17-demethoxygeldanamycin (17AAG) (50 nM) for 48 hours enhanced apoptosis. Together, these in vitro findings indicate that an antiapoptotic mechanism may underlie Ad-mda7 resistance and that such resistance can be overcome by addition of 17AAG. Further investigations along these lines are warranted.
Insights
Lung cancer therapy resistance can be overcome. Combining adenoviral mda-7/IL-24 (Ad-mda-7/IL-24) with 17-allyl-amino-17-demethoxygeldanamycin (17AAG) enhances apoptosis in resistant cancer cells.
Area of Science:
- Oncology
- Molecular Biology
- Gene Therapy
Background:
- Cancer therapeutic resistance limits treatment efficacy.
- Adenoviral mda-7/IL-24 (Ad-mda-7/IL-24) is a potential lung cancer therapy.
- Mechanisms of Ad-mda-7/IL-24 resistance require elucidation.
Purpose of the Study:
- To investigate molecular mechanisms of Ad-mda-7/IL-24 resistance in lung cancer.
- To develop strategies to overcome Ad-mda-7/IL-24 resistance.
Main Methods:
- Established Ad-mda-7/IL-24-resistant lung cancer cell lines (A549R1-R4).
- Analyzed anti-apoptotic protein expression (AKT, p-AKT, bcl-2, bcl-xL) via Western blot.
- Assessed apoptosis induction using flow cytometry after combination therapy.
Main Results:
- Resistant cell lines exhibited altered bcl-2 and bcl-xL expression.
- Combination therapy with Ad-mda-7/IL-24 and 17-allyl-amino-17-demethoxygeldanamycin (17AAG) enhanced apoptosis in resistant cells.
- An anti-apoptotic mechanism underlies Ad-mda-7/IL-24 resistance.
Conclusions:
- Antiapoptotic mechanisms contribute to Ad-mda-7/IL-24 resistance in lung cancer.
- Combination therapy with 17AAG can overcome Ad-mda-7/IL-24 resistance.
- Further research is warranted to explore clinical applications.
