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A filtration-based protein microarray technique

机译:基于过滤的蛋白质微阵列技术

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Protein microarrays are an emerging technology for studying protein expression profiling and protein functions. However, with the current design approaches, the overall performance of protein microarrays can be compromised by diffusion-limited kinetics. We developed a new protein microarray platform that utilizes a filtration assay with protein microarrays printed on protein-permeable nitrocellulose filter membranes. Compared with protein microarrays assayed with the conventional incubation-shaking method, this new approach overcomes the diffusion limit. We demonstrated that this novel technique can improve the overall reaction kinetic rate by 10-fold, yield a dynamic range of 4 decades, and enhance the assay sensitivity and specificity. Further, using multistacking protein chips, at least 14 chips can be probed simultaneously, with 22 400 different reactions in a single assay. The advantages of large fluorescent dyes, such as phycobilisome and quantum dots, can be better exploited using the filtration assay. The potential clinical applications of the filtration-based protein microarrays were demonstrated by detecting carcinoembryonic antigen in human plasma samples. [References: 31]
机译:蛋白质微阵列是研究蛋白质表达谱和蛋白质功能的新兴技术。但是,采用当前的设计方法,蛋白质微阵列的整体性能可能会受到扩散受限动力学的影响。我们开发了一个新的蛋白质微阵列平台,该平台利用了过滤分析,并将蛋白质微阵列印在蛋白质可渗透的硝酸纤维素滤膜上。与使用常规孵育摇动法检测的蛋白质微阵列相比,这种新方法克服了扩散限制。我们证明了这种新技术可以将整体反应动力学速率提高10倍,动态范围可以达到4十年,并可以提高测定的灵敏度和特异性。此外,使用多堆叠蛋白芯片,可以在一次测定中同时探测至少14个芯片,并具有22400种不同的反应。大型荧光染料的优势,例如藻胆体和量子点,可以通过过滤分析更好地利用。通过检测人血浆样品中的癌胚抗原,证明了基于过滤的蛋白质微阵列的潜在临床应用。 [参考:31]

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