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NanoProbeArrays for the Analysis of Ultra-Low-Volume Protein Samples using Piezoelectric Liquid Dispensing Technology

机译:NanoProbeArrays使用压电液体分配技术分析超少量蛋白质样品

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Antibody microarrays are gaining popularity as a high-throughput technology to investigate the proteome. However, protein extracts from most body fluid or biopsy samples are available in very small volumes and are often unsuitable for large-scale antibody microarray studies. To demonstrate the potential for protein analysis with as little as a few nanoliters of sample, we have developed a new technology called NanoProbeArrays based on piezoelectric liquid dispensing for non-contact printing and probing of antibody arrays. Instead of flooding the protein sample on the antibody microarray surface, as in conventional microarray screening, a piezoelectric inkjet printer is used to dispense nanoliters of fluorescently labeled proteins over the antibody spots on the array. The ability of NanoProbeArrays to precisely identify and reliably distinguish between test proteins from different sources, without any loss of sensitivity and specificity as compared with conventional antibody microarrays, is illustrated here. The utility of NanoProbeArrays for biomarker identification in a complex biological sample was tested by detecting the cytokine interleukin-4 in serum. The significant reduction in volume of sample during NanoProbeArray analysis, as compared with conventional antibody microarrays, offers new opportunities for basic and applied proteomic research.
机译:抗体微阵列作为研究蛋白质组的高通量技术正变得越来越流行。但是,从大多数体液或活检样品中提取的蛋白质提取物的体积很小,通常不适合进行大规模抗体微阵列研究。为了证明使用少至几纳升的样品进行蛋白质分析的潜力,我们开发了一种名为NanoProbeArrays的新技术,该技术基于压电液体分配,可用于非接触式印刷和抗体阵列的探测。代替了如常规微阵列筛选中那样将蛋白质样品充满在抗体微阵列表面上,而是使用压电喷墨打印机将纳升的荧光标记蛋白质分配在阵列上的抗体斑点上。此处展示了NanoProbeArrays能够准确识别和可靠区分不同来源的测试蛋白的能力,与常规抗体微阵列相比,不会损失任何敏感性和特异性。通过检测血清中的细胞因子IL-4,测试了NanoProbeArrays在复杂生物样品中鉴定生物标志物的效用。与传统的抗体微阵列相比,NanoProbeArray分析期间样品体积的显着减少,为基础和应用蛋白质组学研究提供了新的机会。

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