Cell-growth and migration inhibition of human mesothelioma cells induced by 3-O-Methylfunicone from Penicillium pinophilum and cisplatin

被引:0
作者
Elisabetta Buommino
Anna De Filippis
Rosario Nicoletti
Massimo Menegozzo
Simona Menegozzo
Maria Letizia Ciavatta
Antonietta Rizzo
Virginia Brancato
Maria Antonietta Tufano
Giovanna Donnarumma
机构
[1] Second University of Naples (SUN),Department of Experimental Medicine, Section of Microbiology and Clinical Microbiology
[2] CAT Research Unit,Council for Research and Experimentation in Agriculture
[3] SUN,Department of Experimental Medicine, Section of Job Medicine
[4] Institute of Biomolecular Chemistry (ICB-CNR),undefined
来源
Investigational New Drugs | 2012年 / 30卷
关键词
Mesothelioma; 3-O-methylfunicone; Cisplatin; Integrins; Metalloproteinase; Migration;
D O I
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摘要
Malignant pleural mesothelioma is a fatal malignancy linked to asbestos exposure. The main challenge for mesothelioma treatment is to go beyond the drug resistance, in particular against cisplatin (CDDP), one of the most used chemotherapeutic drug. 3-O-methylfunicone (OMF) is a metabolite produced by the fungus Penicillium pinophilum; its antiproliferative properties have been previously studied in vitro. Particularly, OMF is able to inhibit mesothelioma cell motility. To improve the effects of CDDP by-passing the resistance of mesothelioma cells to this drug, in the present study we investigated the combined treatment of OMF with CDDP respectively in an established mesothelioma cell line (NCI) and primary mesothelioma cells (Mest). As compared to the effect of single treatments, the combination of OMF and CDDP resulted in a stronger inhibition of NCI and Mest cell proliferation. OMF combination with CDDP was also able to affect the migratory ability of NCI and Mest cells by down-regulating αv and β5 expression and reducing metalloproteinase 2 (MMP-2) production. In addition, this association was effective in modulating VEGF gene expression. This finding highlights the possibility to use OMF and CDDP together to regulate angiogenesis and tumour progression in mesothelioma.
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页码:1343 / 1351
页数:8
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