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Proteomic (antibody microarray) exploration of the molecular mechanism of action of the specific COX-2 inhibitor DuP 697

Agarwal, Vijay; Hodgkinson, Victoria C.; Eagle, Gina L.; Scaife, Lucy; Lind, Michael J.; Cawkwell, Lynn

Authors

Vijay Agarwal

Victoria C. Hodgkinson

Gina L. Eagle

Lucy Scaife

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Professor Michael Lind M.J.Lind@hull.ac.uk
Foundation Professor of Oncology/ Head of the Joint Centre for Cancer Studies

Lynn Cawkwell



Abstract

We have previously shown that specific COX-2 inhibitors, including DuP 697, have anti-proliferative effects on mesothelioma cells and potentiate the cytotoxicity of pemetrexed. Here, we used a novel proteomic approach to explore the mechanism of action of this agent. COX-2-positive cell lines MSTO-211H (mesothelioma) and A549 (lung cancer) were exposed to DuP 697 for 72 h. Drug carrier only was added to control cells. Extracted proteins from treated and control cells were analysed using a comparative proteomic platform. Differentially expressed proteins, identified by the Panorama Xpress Profiler725 antibody microarray were submitted to Ingenuity Pathway Analysis. A total of 32 unique differentially expressed proteins were identified with a significant (>1.8-fold) difference in expression between treated and untreated cells in at least one cell line. Five molecules, BCL2L1 (Bcl-xL), BID, CHUK (IKK), FASLG and RAF1, were mapped to the Apoptosis Signaling pathway following Ingenuity Pathway Analysis. BCL2L1 (Bcl-xL) and BID were analysed using immunoblotting and differential expression was confirmed. Proteomic (antibody microarray) analysis suggests that the mechanism of action of DuP 697 may be exerted via the induction of apoptosis. The antibody microarray platform can be utilised to explore the molecular mechanism of action of novel anticancer agents.

Citation

Agarwal, V., Hodgkinson, V. C., Eagle, G. L., Scaife, L., Lind, M. J., & Cawkwell, L. (2013). Proteomic (antibody microarray) exploration of the molecular mechanism of action of the specific COX-2 inhibitor DuP 697. International Journal of Oncology, 42(3), 1088-1092. https://doi.org/10.3892/ijo.2013.1784

Journal Article Type Article
Online Publication Date Jan 22, 2013
Publication Date Mar 1, 2013
Deposit Date May 30, 2022
Journal International Journal of Oncology
Print ISSN 1791-2423
Electronic ISSN 1791-2423
Publisher Spandidos Publications
Peer Reviewed Peer Reviewed
Volume 42
Issue 3
Pages 1088-1092
DOI https://doi.org/10.3892/ijo.2013.1784
Public URL https://hull-repository.worktribe.com/output/3564240