| Literature DB >> 25481737 |
Hideo Akiyama1, Yoji Ueda2, Hitoshi Nobumasa2, Hiroyuki Ooshima3, Yohei Ishizawa4, Koji Kitahiro5, Isao Miyagawa5, Kazufumi Watanabe6, Takazumi Nakamura7, Ritsuka Tanaka8, Nobuko Yamamoto9, Hiroki Nakae9, Mitsuo Kawase10, Nobuhiro Gemma11, Yuji Sekiguchi12, Wataru Fujibuchi13, Ryo Matoba14.
Abstract
RNA external standards, although important to ensure equivalence across many microarray platforms, have yet to be fully implemented in the research community. In this article, a set of unique RNA external standards (or RNA standards) and probe pairs that were added to total RNA in the samples before amplification and labeling are described. Concentration-response curves of RNA external standards were used across multiple commercial DNA microarray platforms and/or quantitative real-time polymerase chain reaction (RT-PCR) and next-generation sequencing to identify problematic assays and potential sources of variation in the analytical process. A variety of standards can be added in a range of concentrations spanning high and low abundances, thereby enabling the evaluation of assay performance across the expected range of concentrations found in a clinical sample. Using this approach, we show that we are able to confirm the dynamic range and the limit of detection for each DNA microarray platform, RT-PCR protocol, and next-generation sequencer. In addition, the combination of a series of standards and their probes was investigated on each platform, demonstrating that multiplatform calibration and validation is possible.Keywords: Cross-platform; DNA microarray; Dynamic range; External RNA standards; Multiplatform calibration
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Year: 2014 PMID: 25481737 DOI: 10.1016/j.ab.2014.11.012
Source DB: PubMed Journal: Anal Biochem ISSN: 0003-2697 Impact factor: 3.365