High-throughput target discovery using cell-based genetics

被引:11
作者
Jackson, RD [1 ]
Harrington, JI [1 ]
机构
[1] Athersys Inc, Cleveland, OH 44115 USA
关键词
D O I
10.1016/S1359-6446(04)03303-3
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
High-throughput target discovery requires robust disease models and the ability to rapidly survey the genome for function. In the post-genomics era, there has been a strong emphasis placed upon 'gene-to-function' approaches that take advantage of the large amount of gene sequence information now available. Here, we advocate a return to 'function-to-gene' approaches as a first step in target discovery (and validation), followed by hypothesis-driven research to validate new targets identified by their activity in cell-based disease models.
引用
收藏
页码:53 / 60
页数:8
相关论文
共 50 条
[31]   Standardized high-throughput evaluation of cell-based compound screens [J].
Peter Frommolt ;
Roman K Thomas .
BMC Bioinformatics, 9
[32]   High-throughput cell-based screen for inhibitors of AR activity [J].
Richards, Juliet L. ;
Barrie, Elaine ;
Garrett, Michelle D. .
CANCER RESEARCH, 2010, 70
[33]   Miniaturized microfluidic formats for cell-based high-throughput screening [J].
Upadhaya, Sarvesh ;
Selvaganapathy, Ponnambalam Ravi .
Critical Reviews in Biomedical Engineering, 2009, 37 (03) :193-257
[34]   A cell-based high-throughput screening assay for radiation susceptibility using automated cell counting [J].
Hodzic, Jasmina ;
Dingjan, Ilse ;
Maas, Marielle J. P. ;
van der Meulen-Muileman, Ida H. ;
de Menezes, Renee X. ;
Heukelom, Stan ;
Verheij, Marcel ;
Gerritsen, Winald R. ;
Geldof, Albert A. ;
van Triest, Baukelien ;
van Beusechem, Victor W. .
RADIATION ONCOLOGY, 2015, 10
[35]   Target Discovery for Precision Medicine Using High-Throughput Genome Engineering [J].
Guo, Xinyi ;
Chitale, Poonam ;
Sanjana, Neville E. .
PRECISION MEDICINE, CRISPR, AND GENOME ENGINEERING: MOVING FROM ASSOCIATION TO BIOLOGY AND THERAPEUTICS, 2017, 1016 :123-145
[36]   A cell-based high-throughput screening assay for radiation susceptibility using automated cell counting [J].
Jasmina Hodzic ;
Ilse Dingjan ;
Mariëlle JP Maas ;
Ida H van der Meulen-Muileman ;
Renee X de Menezes ;
Stan Heukelom ;
Marcel Verheij ;
Winald R Gerritsen ;
Albert A Geldof ;
Baukelien van Triest ;
Victor W van Beusechem .
Radiation Oncology, 10
[37]   Discovery of novel BRD4 inhibitors by high-throughput screening, crystallography, and cell-based assays [J].
Sun, Zhongya ;
Zhang, Hao ;
Chen, Zhifeng ;
Xie, Yiqian ;
Jiang, Hao ;
Chen, Limin ;
Ding, Hong ;
Zhang, Yuanyuan ;
Jiang, Hualiang ;
Zheng, Mingyue ;
Luo, Cheng .
BIOORGANIC & MEDICINAL CHEMISTRY LETTERS, 2017, 27 (09) :2003-2009
[38]   A high-throughput cell-based toxicity analysis of drug metabolites using flow cytometry [J].
E. J. Buenz .
Cell Biology and Toxicology, 2007, 23 :361-365
[39]   Using High-Throughput Animal or Cell-Based Models to Functionally Characterize GWAS Signals [J].
Pierre Dourlen ;
Julien Chapuis ;
Jean-Charles Lambert .
Current Genetic Medicine Reports, 2018, 6 (3) :107-115
[40]   High-throughput screening for identification of influenza a inhibitors using a cell-based immunofluorescence assay [J].
Martinez-Gzegozewska, Yohanka ;
Rasmussen, Lynn ;
Nebane, N. Miranda ;
McKellip, Sara ;
Radzieta, Dee ;
Manuvakhova, Anna ;
Reece, Andrew J. ;
Ruiz, Pedro ;
Zhang, Sixue ;
Moukha-Chafiq, Omar ;
Sosa, Melinda ;
Augelli-Szafran, Corinne ;
Whitley, Richard ;
Bostwick, Robert ;
Vinson, Paige .
ANTIVIRAL RESEARCH, 2025, 240