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Low-Volume Label-Free Detection of Molecule-Protein Interactions on Microarrays by Imaging Reflectometric Interferometry

机译:成像反射式干涉仪的小批量无标记分子芯片上蛋白质相互作用的检测。

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This system allows the high-throughput protein interaction analysis on microarrays. We apply the interference technology 1λ–imaging reflectometric interferometry (iRIf) as a label-free detection method and create microfluidic flow cells in microscope slide format for low reagent consumption and lab work compatibility. By now, most prominent for imaging label-free interaction analyses on microarrays are imaging surface plasmon resonance (SPR) methods, quartz crystal microbalance, or biolayer interferometry. SPR is sensitive against temperature drifts and suffers from plasmon crosstalk, and all systems lack array size (maximum 96 spots). Our detection system is robust against temperature drifts. Microarrays are analyzed with a spatial resolution of 7 μm and time resolution of ≤50 fps. System sensitivity is competitive, with random noise of <5 × 10~(?5) and baseline drift of <3 × 10~(?6). Currently available spotting technologies limit array sizes to ~4 spots/mm~(2) (1080 spots/array); our detection system would allow ~40 spots/mm~(2) (10,800 spots/array). The microfluidic flow cells consist of structured PDMS inlays sealed by versatilely coated glass slides immobilizing the microarray. The injection protocol determines reagent volumes, priming rates, and flow cell temperatures for up to 44 reagents; volumes of ≤300 μL are validated. The system is validated physically by the biotinylated bovine serum albumin streptavidin assay and biochemically by thrombin aptamer interaction analysis, resulting in a KD of ~100 nM.
机译:该系统允许在微阵列上进行高通量蛋白质相互作用分析。我们将干涉技术1λ-成像反射干涉法(iRIf)用作无标记的检测方法,并以显微镜载玻片的形式创建微流控流通池,以降低试剂消耗和实验室工作兼容性。到目前为止,在微阵列上对无标记相互作用成像进行成像的最主要方法是成像表面等离振子共振(SPR)方法,石英晶体微天平或生物层干涉法。 SPR对温度漂移很敏感,并遭受等离振子串扰,所有系统都缺少阵列大小(最多96个斑点)。我们的检测系统可抵抗温度漂移。分析微阵列的空间分辨率为7μm,时间分辨率为≤50fps。系统灵敏度具有竞争力,随机噪声<5×10〜(?5),基线漂移<3×10〜(?6)。当前可用的斑点技术将阵列大小限制为〜4个斑点/ mm〜(2)(1080个斑点/阵列);我们的检测系统将允许〜40个斑点/ mm〜(2)(10,800个斑点/阵列)。微流体流通池由结构化的PDMS镶嵌物组成,镶嵌物由固定化微阵列的通用涂层载玻片密封。进样方案可确定多达44种试剂的试剂量,灌注速率和流通池温度; ≤300μL的体积已验证。该系统通过生物素化的牛血清白蛋白链霉亲和素测定法进行了物理验证,并通过凝血酶适体相互作用分析进行了生化验证,结果KD约为100 nM。

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