DocumentCode :
140634
Title :
Novel prediction of anticancer drug chemosensitivity in cancer cell lines: Evidence of moderation by microRNA expressions
Author :
Yang, Daniel S.
Author_Institution :
Woodbridge High Sch., Irvine, CA, USA
fYear :
2014
fDate :
26-30 Aug. 2014
Firstpage :
4780
Lastpage :
4786
Abstract :
The objectives of this study are (1) to develop a novel “moderation” model of drug chemosensitivity and (2) to investigate if miRNA expression moderates the relationship between gene expression and drug chemosensitivity, specifically for HSP90 inhibitors applied to human cancer cell lines. A moderation model integrating the interaction between miRNA and gene expressions was developed to examine if miRNA expression affects the strength of the relationship between gene expression and chemosensitivity. Comprehensive datasets on miRNA expressions, gene expressions, and drug chemosensitivities were obtained from National Cancer Institute´s NCI-60 cell lines including nine different cancer types. A workflow including steps of selecting genes, miRNAs, and compounds, correlating gene expression with chemosensitivity, and performing multivariate analysis was utilized to test the proposed model. The proposed moderation model identified 12 significantly-moderating miRNAs: miR-15b*, miR-16-2*, miR-9, miR-126*, miR-129*, miR-138, miR-519e*, miR-624*, miR-26b, miR-30e*, miR-32, and miR-196a, as well as two genes ERCC2 and SF3B1 which affect chemosensitivities of Tanespimycin and Alvespimycin - both HSP90 inhibitors. A bootstrap resampling of 2,500 times validates the significance of all 12 identified miRNAs. The results confirm that certain miRNA and gene expressions interact to produce an effect on drug response. The lack of correlation between miRNA and gene expression themselves suggests that miRNA transmits its effect through translation inhibition/control rather than mRNA degradation. The results suggest that miRNAs could serve not only as prognostic biomarkers for cancer treatment outcome but also as interventional agents to modulate desired chemosensitivity.
Keywords :
RNA; biochemistry; cancer; drugs; genetics; inhibitors; molecular biophysics; patient treatment; sampling methods; HSP90 inhibitors; alvespimycin; anticancer drug chemosensitivity prediction; bootstrap resampling; human cancer cell lines; microRNA expressions; multivariate analysis; prognostic biomarkers; tanespimycin; Cancer; Clinical trials; Compounds; Drugs; Gene expression; Mathematical model; Proteins;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Engineering in Medicine and Biology Society (EMBC), 2014 36th Annual International Conference of the IEEE
Conference_Location :
Chicago, IL
ISSN :
1557-170X
Type :
conf
DOI :
10.1109/EMBC.2014.6944693
Filename :
6944693
Link To Document :
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