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Automated target preparation for microarray-based gene expression analysis

机译:基于微阵列的基因表达分析的自动化靶标制备

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DNA microarrays have rapidly evolved toward a platform for massively paralleled gene expression analysis. Despite its widespread use, the technology has been criticized to be vulnerable to technical variability. Addressing this issue, recent comparative, interplatform, and interlaboratory studies have revealed that, given defined procedures for "wet lab" experiments and data processing, a satisfactory reproducibility and little experimental variability can be achieved. In view of these advances in standardization, the requirement for uniform sample preparation becomes evident, especially if a microarray platform is used as a facility, i.e., by different users working in the laboratory. While one option to reduce technical variability is to dedicate one laboratory technician to all microarray studies, we have decided to automate the entire RNA sample preparation implementing a liquid handling system coupled to a thermocycler and a microtiter plate reader. Indeed, automated RNA sample preparation prior to chip analysis enables ( 1) the reduction of experimentally caused result variability, ( 2) the separation of ( important) biological variability from ( undesired) experimental variation, and ( 3) interstudy comparison of gene expression results. Our robotic platform can process up to 24 samples in parallel, using an automated sample preparation method that produces high-quality biotin-labeled cRNA ready to be hybridized on Affymetrix GeneChips. The results show that the technical interexperiment variation is less pronounced than with manually prepared samples. Moreover, experiments using the same starting material showed that the automated process yields a good reproducibility between samples.
机译:DNA微阵列已迅速发展成为大规模平行基因表达分析的平台。尽管已广泛使用该技术,但人们批评该技术易受技术变化的影响。针对此问题,最近的比较,跨平台和实验室间的研究表明,在给定的“湿实验室”实验和数据处理程序的前提下,可以实现令人满意的重现性和很小的实验变异性。鉴于标准化的这些进步,对均匀样品制备的要求变得显而易见,尤其是如果将微阵列平台用作设施,即由实验室中的不同用户使用。虽然减少技术差异的一种选择是让一名实验室技术人员从事所有微阵列研究,但我们已决定通过将液体处理系统与热循环仪和微量滴定板读取器耦合来自动化整个RNA样品制备。确实,在芯片分析之前进行自动RNA样品制备能够(1)减少实验导致的结果变异性;(2)将(重要的)生物变异性与(不需要的)实验变异性分开;以及(3)基因表达结果的研究间比较。我们的机器人平台可以使用自动样品制备方法并行处理多达24个样品,该方法可以产生高质量的生物素标记cRNA,可以在Affymetrix GeneChips上杂交。结果表明,与手工制备的样品相比,技术间的实验差异不那么明显。此外,使用相同原料的实验表明,自动化过程在样品之间具有良好的可重复性。

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