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Increased Cross-Platform Microarray Data Set Correlation via Substrate-Independent Nanofilms

机译:通过独立于底物的纳米膜,增加了跨平台微阵列数据集的相关性

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Recently developed substrate-independent nanofilms were utilized to generate highly concordant cross-platform microarray data sets on a diverse set of materials such as glass, mica, silicon, and polymer. Using model DNA and protein dose-response assays, the number of cross-platform data sets exhibiting high correlation (>0.98) increased from 33percent to 86percent when utilizing platforms coated with substrate-independent nanofilms as opposed to traditional surface coatings such as aminosilane and poly-L-lysine. Furthermore, it is shown how the surface properties of the substrate-independent nanofilms can be tailored through secondary modifications to improve assay performance, demonstrating a viable approach for standardized and rapid biochip development through common, yet upgradable, cross-platform interfaces.
机译:利用最近开发的与基底无关的纳米膜,可以在多种材料(例如玻璃,云母,硅和聚合物)上生成高度一致的跨平台微阵列数据集。使用模型DNA和蛋白质剂量反应分析,与传统的表面涂层(如氨基硅烷和聚氨基甲酸酯)相比,当使用涂覆有不受基底影响的纳米膜的平台时,显示出高度相关性(> 0.98)的跨平台数据集的数量从33%增加到86% -L-赖氨酸此外,它显示了如何通过二次修饰来改善独立于底物的纳米膜的表面性能,以提高测定性能,从而证明了通过通用但可升级的跨平台界面进行标准化和快速生物芯片开发的可行方法。

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