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Quality control of chip manufacture and chip analysis using epoxy-chips as a model

机译:使用环氧树脂芯片作为模型的芯片制造和芯片分析的质量控制

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摘要

Biochips are miniaturized, highly ordered analysis systems which offer the unique advantage of highly parallel analysis of thousands of analytes at the same time. Although this technique has been enthusiastically developed and has promised to improve and speed up numerous biological assays, the quality control of chip manufacture, chip analysis and data management has received less attention. The following article compares three epoxy-containing chip surfaces (ARChip Epoxy, 3D-Link~(TM), and EasySpot) with respect to their autofluorescence, immobilization capacity, background fluorescence and hybridization efficiency. Since data collected from biochip experiments are random snapshots with errors, inherently noisy and incomplete, we tried to evaluate technical factors causing variability and to set up quality control procedures for chip manufacture and chip analysis. Variabilities caused by arraying, glass substrate and polymer coating, fluorescent label and experimental conditions are discussed in details.
机译:生物芯片是小型,高度有序的分析系统,具有同时对数千种分析物进行高度平行分析的独特优势。尽管这项技术已经得到了热烈的发展,并有望改善和加快许多生物学检测的速度,但是芯片制造,芯片分析和数据管理的质量控制却很少受到关注。下面的文章比较了三种含环氧基的芯片表面(ARChip环氧,3D-LinkTM和EasySpot)的自发荧光,固定能力,背景荧光和杂交效率。由于从生物芯片实验中收集的数据是带有错误,固有噪声和不完整的随机快照,因此,我们试图评估导致可变性的技术因素,并建立用于芯片制造和芯片分析的质量控制程序。详细讨论了由排列,玻璃基板和聚合物涂层,荧光标记和实验条件引起的差异。

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