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Analysis of image-based phenotypic parameters for high throughput gene perturbation assays

Authors
Song, MeeJeong, EunaLee, Tae-KyuTsoy, YuryKwon, Yong-JunYoon, Sukjoon
Issue Date
Oct-2015
Publisher
ELSEVIER SCI LTD
Keywords
siRNA screening; Gene perturbation; Image-based assay; Phenotypic parameter
Citation
COMPUTATIONAL BIOLOGY AND CHEMISTRY, v.58, pp 192 - 198
Pages
7
Journal Title
COMPUTATIONAL BIOLOGY AND CHEMISTRY
Volume
58
Start Page
192
End Page
198
URI
https://scholarworks.sookmyung.ac.kr/handle/2020.sw.sookmyung/10200
DOI
10.1016/j.compbiolchem.2015.07.005
ISSN
1476-9271
1476-928X
Abstract
Although image-based phenotypic assays are considered a powerful tool for siRNA library screening, the reproducibility and biological implications of various image-based assays are not well-characterized in a systematic manner. Here, we compared the resolution of high throughput assays of image-based cell count and typical cell viability measures for cancer samples. It was found that the optimal plating density of cells was important to obtain maximal resolution in both types of assays. In general, cell counting provided better resolution than the cell viability measure in diverse batches of siRNAs. In addition to cell count, diverse image-based measures were simultaneously collected from a single screening and showed good reproducibility in repetitions. They were classified into a few functional categories according to biological process, based on the differential patterns of hit (i.e., siRNAs) prioritization from the same screening data. The presented systematic analyses of image-based parameters provide new insight to a multitude of applications and better biological interpretation of high content cell-based assays. (C) 2015 Elsevier Ltd. All rights reserved.
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