Nagaraj Vinay Janthakahalli, Eaton Seron, Wiktor Peter
Center for Bioelectronics and Biosensors, The Biodesign Institute at Arizona State University, Tempe, AZ 85287, USA.
J Lab Autom. 2011 Apr;16(2):126-33. doi: 10.1016/j.jala.2010.07.005. Epub 2010 Oct 8.
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.
抗体微阵列作为一种用于研究蛋白质组的高通量技术正日益受到欢迎。然而,大多数体液或活检样本中的蛋白质提取物量非常少,且通常不适用于大规模抗体微阵列研究。为了证明仅用几纳升样本进行蛋白质分析的潜力,我们基于压电液体分配技术开发了一种名为纳米探针阵列的新技术,用于非接触式打印和探测抗体阵列。与传统微阵列筛选中在抗体微阵列表面大量倾注蛋白质样本不同,压电喷墨打印机用于在阵列上的抗体斑点上分配纳升量的荧光标记蛋白质。本文展示了纳米探针阵列能够精确识别并可靠区分来自不同来源的测试蛋白质的能力,与传统抗体微阵列相比,其灵敏度和特异性均无任何损失。通过检测血清中的细胞因子白细胞介素 -4 来测试纳米探针阵列在复杂生物样本中识别生物标志物的效用。与传统抗体微阵列相比,纳米探针阵列分析过程中样本体积的显著减少为基础和应用蛋白质组学研究提供了新的机会。