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Inhibition of the platelet-derived growth factor receptor beta (PDGFRB) using gene silencing, crenolanib besylate, or imatinib mesylate hampers the malignant phenotype of mesothelioma cell lines

Authors :
Lucia Pellè
Laura Boldrini
Alfonso Cristaudo
Luciano Mutti
Alessandra Bonotti
Calogerina Catalano
Federica Gemignani
Gabriella Fontanini
Rudy Foddis
Ombretta Melaiu
Monica Evangelista
Chiara De Santi
Elisa Sensi
Stefano Landi
Alice Guazzelli
Elisa Barone
Gisella Figlioli
Monica Cipollini
Source :
Genes & Cancer
Publication Year :
2017
Publisher :
Impact Journals LLC, 2017.

Abstract

Malignant pleural mesothelioma (MPM) is a cancer of the pleural cavity resistant to chemotherapy. The identification of novel therapeutic targets is needed to improve its poor prognosis. Following a review of literature and a screening of specimens we found that platelet-derived growth factor receptor beta (PDGFRB) is over-expressed, but not somatically mutated, in MPM tissues. We aimed to ascertain whether PDGFRB is a MPM-cancer driver gene. The approaches employed included the use of gene silencing and the administration of small molecules, such as crenolanib and imatinib (PDGFR inhibitors) on MPM cell lines (IstMes2, Mero-14, Mero-25). Met5A cells were used as non-malignant mesothelial cell line. PDGFRB-silencing caused a decrease in the proliferation rate, and a reduced colony formation capacity, as well as an increase of the share of cells in sub-G1 and in G2 phase, and increased apoptotic rate of MPM cell lines. Loss of migration ability was also observed. Similar, or even further enhanced, results were obtained with crenolanib. Imatinib showed the least effective activity on the phenotype. In conclusion, our study highlights PDGFRB as target with a clear role in MPM tumorigenesis and provided a rationale to explore further the efficacy of crenolanib in MPM patients, with promising results.

Details

Language :
English
ISSN :
19476027 and 19476019
Volume :
8
Issue :
1-2
Database :
OpenAIRE
Journal :
Genes & Cancer
Accession number :
edsair.doi.dedup.....207382b1ac7e17dc7e4ad239766f5e20