Assessing compound carcinogenicity in vitro using connectivity mapping

被引:29
作者
Caiment, Florian [1 ]
Tsamou, Maria [1 ]
Jennen, Danyel [1 ]
Kleinjans, Jos [1 ]
机构
[1] Maastricht Univ, Dept Toxicogen, NL-6200 Maastricht, Netherlands
关键词
GENE-EXPRESSION; HEPATOCELLULAR-CARCINOMA; NONGENOTOXIC CARCINOGENS; TOXICOGENOMICS; PREDICTION; GENOTOXICITY; MECHANISMS; MARKER; MAP;
D O I
10.1093/carcin/bgt278
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
One of the main challenges of toxicology is the accurate prediction of compound carcinogenicity. The default test model for assessing chemical carcinogenicity, the 2 year rodent cancer bioassay, is currently criticized because of its limited specificity. With increased societal attention and new legislation against animal testing, toxicologists urgently need an alternative to the current rodent bioassays for chemical cancer risk assessment. Toxicogenomics approaches propose to use global high-throughput technologies (transcriptomics, proteomics and metabolomics) to study the toxic effect of compounds on a biological system. Here, we demonstrate the improvement of transcriptomics assay consisting of primary human hepatocytes to predict the putative liver carcinogenicity of several compounds by applying the connectivity map methodology. Our analyses underline that connectivity mapping is useful for predicting compound carcinogenicity by connecting in vivo expression profiles from human cancer tissue samples with in vitro toxicogenomics data sets. Furthermore, the importance of time and dose effect on carcinogenicity prediction is demonstrated, showing best prediction for low dose and 24 h exposure of potential carcinogens.
引用
收藏
页码:201 / 207
页数:7
相关论文
共 28 条
[1]   Analysis of the mechanisms mediating tumor-specific changes in gene expression in human liver tumors [J].
Acevedo, Luis G. ;
Bieda, Mark ;
Green, Roland ;
Farnham, Peggy J. .
CANCER RESEARCH, 2008, 68 (08) :2641-2651
[2]  
Braga RC, 2012, MINI-REV MED CHEM, V12, P573
[3]   Glypican-3: A novel serum and histochemical marker for hepatocellular carcinoma [J].
Capurro, M ;
Wanless, IR ;
Sherman, M ;
Deboer, G ;
Shi, W ;
Miyoshi, E ;
Filmus, J .
GASTROENTEROLOGY, 2003, 125 (01) :89-97
[4]   Cancer Biomarkers: Can We Turn Recent Failures into Success? [J].
Diamandis, Eleftherios P. .
JOURNAL OF THE NATIONAL CANCER INSTITUTE, 2010, 102 (19) :1462-1467
[5]   Application of toxicogenomics to study mechanisms of genotoxicity and carcinogenicity [J].
Ellinger-Ziegelbauer, Heidrun ;
Aubrecht, Jiri ;
Kleinjans, Jos C. ;
Ahr, Hans-Juergen .
TOXICOLOGY LETTERS, 2009, 186 (01) :36-44
[6]   Hepatocellular carcinoma pathogenesis: from genes to environment [J].
Farazi, Paraskevi A. ;
DePinho, Ronald A. .
NATURE REVIEWS CANCER, 2006, 6 (09) :674-687
[7]   Toxicology for the twenty-first century [J].
Hartung, Thomas .
NATURE, 2009, 460 (7252) :208-212
[8]   An overview of values for the threshold of toxicological concern [J].
Hennes, E. C. .
TOXICOLOGY LETTERS, 2012, 211 (03) :296-303
[9]   Detection of the inferred interaction network in hepatocellular carcinoma from EHCO (Encyclopedia of Hepatocellular Carcinoma genes Online) [J].
Hsu, Chun-Nan ;
Lai, Jin-Mei ;
Liu, Chia-Hung ;
Tseng, Huei-Hun ;
Lin, Chih-Yun ;
Lin, Kuan-Ting ;
Yeh, Hsu-Hua ;
Sung, Ting-Yi ;
Hsu, Wen-Lian ;
Su, Li-Jen ;
Lee, Sheng-An ;
Chen, Chang-Han ;
Lee, Gen-Cher ;
Lee, D. T. ;
Shiue, Yow-Ling ;
Yeh, Chang-Wei ;
Chang, Chao-Hui ;
Kao, Cheng-Yan ;
Huang, Chi-Ying F. .
BMC BIOINFORMATICS, 2007, 8 (1)
[10]   Identification of a gene expression profile that discriminates indirect-acting genotoxins from direct-acting genotoxins [J].
Hu, T ;
Gibson, DP ;
Carr, GJ ;
Torontali, SM ;
Tiesman, JP ;
Chaney, JG ;
Aardema, MJ .
MUTATION RESEARCH-FUNDAMENTAL AND MOLECULAR MECHANISMS OF MUTAGENESIS, 2004, 549 (1-2) :5-27