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高通量RNA干扰筛选:实用技巧

High-throughput RNA interference screening: tricks of the trade.

作者信息

Nebane N Miranda, Coric Tatjana, Whig Kanupriya, McKellip Sara, Woods Lakeisha, Sosa Melinda, Sheppard Russell, Rasmussen Lynn, Bjornsti Mary-Ann, White E Lucile

机构信息

High Throughput Screening Center, Southern Research Institute, Birmingham, AL, USA.

出版信息

J Lab Autom. 2013 Aug;18(4):334-9. doi: 10.1177/2211068213486786. Epub 2013 Apr 24.

Abstract

The process of validating an assay for high-throughput screening (HTS) involves identifying sources of variability and developing procedures that minimize the variability at each step in the protocol. The goal is to produce a robust and reproducible assay with good metrics. In all good cell-based assays, this means coefficient of variation (CV) values of less than 10% and a signal window of fivefold or greater. HTS assays are usually evaluated using Z' factor, which incorporates both standard deviation and signal window. A Z' factor value of 0.5 or higher is acceptable for HTS. We used a standard HTS validation procedure in developing small interfering RNA (siRNA) screening technology at the HTS center at Southern Research. Initially, our assay performance was similar to published screens, with CV values greater than 10% and Z' factor values of 0.51 ± 0.16 (average ± standard deviation). After optimizing the siRNA assay, we got CV values averaging 7.2% and a robust Z' factor value of 0.78 ± 0.06 (average ± standard deviation). We present an overview of the problems encountered in developing this whole-genome siRNA screening program at Southern Research and how equipment optimization led to improved data quality.

摘要

验证用于高通量筛选(HTS)的检测方法的过程包括识别变异性来源,并制定在实验方案的每个步骤中将变异性降至最低的程序。目标是产生一个具有良好指标的稳健且可重复的检测方法。在所有良好的基于细胞的检测中,这意味着变异系数(CV)值小于10%,信号窗口为五倍或更大。HTS检测通常使用Z'因子进行评估,该因子结合了标准差和信号窗口。对于HTS,Z'因子值为0.5或更高是可接受的。我们在南方研究所的HTS中心开发小干扰RNA(siRNA)筛选技术时使用了标准的HTS验证程序。最初,我们的检测性能与已发表的筛选结果相似,CV值大于10%,Z'因子值为0.51±0.16(平均值±标准差)。优化siRNA检测后,我们得到的CV值平均为7.2%,稳健的Z'因子值为0.78±0.06(平均值±标准差)。我们概述了在南方研究所开发这个全基因组siRNA筛选项目时遇到的问题,以及设备优化如何提高了数据质量。

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本文引用的文献

1
Statistical methods for analysis of high-throughput RNA interference screens.
Nat Methods. 2009 Aug;6(8):569-75. doi: 10.1038/nmeth.1351.
3
RNA interference.
Nature. 2002 Jul 11;418(6894):244-51. doi: 10.1038/418244a.

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