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by Shi, Leming and Campbell, Gregory and Jones, Wendell D and Campagne, Fabien and Wen, Zhining and Walker, Stephen J and Su, Zhenqiang and Chu, Tzu-Ming and Goodsaid, Federico M and Pusztai, Lajos and Shaughnessy, John D and Oberthuer, André and Thomas, Russell S and Paules, Richard S and Fielden, Mark and Barlogie, Bart and Chen, Weijie and Du, Pan and Fischer, Matthias and Furlanello, Cesare and Gallas, Brandon D and Ge, Xijin and Megherbi, Dalila B and Symmans, W Fraser and Wang, May D and Zhang, John and Bitter, Hans and Brors, Benedikt and Bushel, Pierre R and Bylesjo, Max and Chen, Minjun and Cheng, Jie and Cheng, Jing and Chou, Jeff and Davison, Timothy S and Delorenzi, Mauro and Deng, Youping and Devanarayan, Viswanath and Dix, David J and Dopazo, Joaquin and Dorff, Kevin C and Elloumi, Fathi and Fan, Jianqing and Fan, Shicai and Fan, Xiaohui and Fang, Hong and Gonzaludo, Nina and Hess, Kenneth R and Hong, Huixiao and Huan, Jun and Irizarry, Rafael A and Judson, Richard and Juraeva, Dilafruz and Lababidi, Samir and Lambert, Christophe G and Li, Li and Li, Yanen and Li, Zhen and Lin, Simon M and Liu, Guozhen and Lobenhofer, Edward K and Luo, Jun and Luo, Wen and McCall, Matthew N and Nikolsky, Yuri and Pennello, Gene A and Perkins, Roger G and Philip, Reena and Popovici, Vlad and Price, Nathan D and Qian, Feng and Scherer, Andreas and Shi, Tieliu and Shi, Weiwei and Sung, Jaeyun and Thierry-Mieg, Danielle and Thierry-Mieg, Jean and Thodima, Venkata and Trygg, Johan and Vishnuvajjala, Lakshmi and Wang, Sue Jane and Wu, Jianping and Wu, Yichao and Xie, Qian and Yousef, Waleed A and Zhang, Liang and Zhang, Xuegong and Zhong, Sheng and Zhou, Yiming and Zhu, Sheng and Arasappan, Dhivya and Bao, Wenjun and Lucas, Anne Bergstrom and Berthold, Frank and Brennan, Richard J and Buness, Andreas and Catalano, Jennifer G and Chang, Chang and Chen, Rong and Cheng, Yiyu and ... and MAQC Consortium and Umeå universitet and Teknisk-naturvetenskapliga fakulteten and Kemiska institutionen
Nature Biotechnology, ISSN 1087-0156, 08/2010, Volume 28, Issue 8, pp. 827 - 838
Journal Article
Nature Biotechnology, ISSN 1087-0156, 09/2014, Volume 32, Issue 9, pp. 926 - 932
The concordance of RNA-sequencing (RNA-seq) with microarrays for genome-wide analysis of differential gene expression has not been rigorously assessed using a... 
CONSISTENCY | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | PLATFORMS | GENE-EXPRESSION | SCIENCE | DIFFERENTIAL EXPRESSION ANALYSIS | ARRAYS | REPRODUCIBILITY | Rats | Animals | Sequence Analysis, RNA | Oligonucleotide Array Sequence Analysis | RNA, Messenger - genetics | RNA sequencing | Genetic research | Research | Genetic transcription | Genomes | Models | Ribonucleic acid--RNA | Chemicals
Journal Article
Environmental Health Perspectives, ISSN 0091-6765, 01/2017, Volume 125, Issue 1, pp. A8 - A11
In the mBMSC assay, the data were more consistent between adipogenesis and gene induction, but they disagree qualitatively and quantitatively with the 3T3-L1... 
Cytochrome | Studies | Toxicology | Identification methods | Biosynthesis | Phosphatase | Kinases | Chemicals | Biological activity | Correspondence
Journal Article
Frontiers in genetics, ISSN 1664-8021, 2018, Volume 9, p. 485
The TempO-Seq platform allows for targeted transcriptomic analysis and is currently used by many groups to perform high-throughput gene expression analysis.... 
RNA sequencing | Usage | DNA microarrays | Research | Gene expression | microarray | mode of action | RNA-Seq | TempO-Seq | chemicals | S1500
Journal Article
Toxicological Sciences, ISSN 1096-6080, 2017, Volume 159, Issue 1, pp. 124 - 136
Effective prediction of human responses to chemical and drug exposure is of critical importance in environmental toxicology research and drug development.... 
Xenobiotic metabolism | Nuclear receptor | HepaRG | In vitro | Spheroids | L-LYSYL-FLUORESCEIN | CYTOCHROMES P450 | SAFETY | INJURY | HEPG2 | xenobiotic metabolism | in vitro | IN-VITRO MODEL | DRUG DEVELOPMENT | nuclear receptor | TOXICOLOGY | spheroids | CULTURES | CELL-LINE | INDUCED HEPATOTOXICITY
Journal Article
Toxicological Sciences, ISSN 1096-6080, 03/2019, Volume 168, Issue 1, pp. 225 - 240
Abstract The standard methods for toxicity testing using rodent models cannot keep pace with the increasing number of chemicals in our environment due to time... 
internal concentration | TOXICITY | MODEL | prioritization | toxicity screening | PLATFORM | malformations | neurotoxicity | EMBRYO | IN-VIVO | SYSTEMS | ASSAYS | FLAME RETARDANTS | TOXICOLOGY | zebrafish | EXPOSURE
Journal Article
Cancer Research, ISSN 0008-5472, 04/2012, Volume 72, Issue 8 Supplement, pp. LB-461 - LB-461
Journal Article
International Journal of Biotechnology, ISSN 0963-6048, 2015, Volume 14, Issue 1, pp. 7 - 27
Humans are exposed to thousands of chemicals with inadequate toxicological data. Advances in computational toxicology, robotic high throughput screening (HTS),... 
High throughput screening | Toxicology | NextGen sequencing | Pathways | In vitro | Toxicogenomics | Robotics | Tox21 | Screening | Government agencies | Mathematical models | In vitro testing | Biological | Assaying | Intersections
Journal Article
PloS one, ISSN 1932-6203, 2017, Volume 12, Issue 7, pp. e0181291 - e0181291
[This corrects the article DOI: 10.1371/journal.pone.0177902.]. 
Cytotoxicity | Profiling | Real time | Toxicity
Journal Article