Thompson Karol L, Rosenzweig Barry A, Pine P Scott, Retief Jacques, Turpaz Yaron, Afshari Cynthia A, Hamadeh Hisham K, Damore Michael A, Boedigheimer Michael, Blomme Eric, Ciurlionis Rita, Waring Jeffrey F, Fuscoe James C, Paules Richard, Tucker Charles J, Fare Thomas, Coffey Ernest M, He Yudong, Collins Patrick J, Jarnagin Kurt, Fujimoto Susan, Ganter Brigitte, Kiser Gretchen, Kaysser-Kranich Tamma, Sina Joseph, Sistare Frank D
Center for Drug Evaluation and Research, US FDA, Silver Spring, MD 20993, USA.
Nucleic Acids Res. 2005 Dec 23;33(22):e187. doi: 10.1093/nar/gni186.
The comparability and reliability of data generated using microarray technology would be enhanced by use of a common set of standards that allow accuracy, reproducibility and dynamic range assessments on multiple formats. We designed and tested a complex biological reagent for performance measurements on three commercial oligonucleotide array formats that differ in probe design and signal measurement methodology. The reagent is a set of two mixtures with different proportions of RNA for each of four rat tissues (brain, liver, kidney and testes). The design provides four known ratio measurements of >200 reference probes, which were chosen for their tissue-selectivity, dynamic range coverage and alignment to the same exemplar transcript sequence across all three platforms. The data generated from testing three biological replicates of the reagent at eight laboratories on three array formats provides a benchmark set for both laboratory and data processing performance assessments. Close agreement with target ratios adjusted for sample complexity was achieved on all platforms and low variance was observed among platforms, replicates and sites. The mixed tissue design produces a reagent with known gene expression changes within a complex sample and can serve as a paradigm for performance standards for microarrays that target other species.
使用一组通用标准可提高利用微阵列技术生成的数据的可比性和可靠性,这组标准能够对多种格式进行准确性、可重复性和动态范围评估。我们设计并测试了一种复杂的生物试剂,用于在三种商业寡核苷酸阵列格式上进行性能测量,这三种格式在探针设计和信号测量方法上有所不同。该试剂是一组两种混合物,每种混合物包含四种大鼠组织(脑、肝、肾和睾丸)中不同比例的RNA。这种设计提供了超过200个参考探针的四个已知比例测量值,这些探针因其组织选择性、动态范围覆盖以及在所有三个平台上与同一示例转录本序列的比对而被选中。在八个实验室对该试剂的三个生物复制品在三种阵列格式上进行测试所生成的数据,为实验室和数据处理性能评估提供了一个基准集。在所有平台上都实现了与针对样本复杂性调整后的目标比例的高度一致,并且在平台、复制品和位点之间观察到了低方差。混合组织设计产生了一种在复杂样本中具有已知基因表达变化的试剂,并且可以作为针对其他物种的微阵列性能标准的范例。