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Microfluidic integration for automated targeted proteomic assays

机译:微流体整合用于自动化靶向蛋白质组分析

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摘要

A dearth of protein isoform-based clinical diagnostics currently hinders advances in personalized medicine. A well-organized protein biomarker validation process that includes facile measurement of protein isoforms would accelerate development of effective protein-based diagnostics. Toward scalable protein isoform analysis, we introduce a microfluidic "single-channel, multistage" immuno-blotting strategy. The multistep assay performs all immunoblotting steps: separation, immobilization of resolved proteins, antibody probing of immobilized proteins, and all interim wash steps. Programmable, low-dispersion electrophoretic transport obviates the need for pumps and valves. A three-dimensional bulk photo-reactive hydrogel eliminates manual blotting. In addition to simplified operation and interfacing, directed electrophoretic transport through our 3D nanoporous reactive hydrogel yields superior performance over the state-of-the-art in enhanced capture efficiency (on par with membrane electroblotting) and sparing consumption of reagents (ca. 1 ng antibody), as supported by empirical and by scaling analyses. We apply our fully integrated microfluidic assay to protein measurements of endogenous prostate specific antigen isoforms in (/) minimally processed human prostate cancer cell lysate (1.1 pg limit of detection) and (ii) crude sera from metastatic prostate cancer patients. The single-instrument functionality establishes a scalable microfluidic framework for high-throughput targeted proteomics, as is relevant to personalized medicine through robust protein biomarker verification, systematic characterization of new antibody probes for functional proteomics, and, more broadly, to characterization of human biospecimen repositories.
机译:目前缺乏基于蛋白质同工型的临床诊断方法阻碍了个性化医学的发展。包括对蛋白质同工型的简便测量在内的组织良好的蛋白质生物标志物验证过程将加速基于蛋白质的有效诊断方法的开发。为了进行可扩展的蛋白质同工型分析,我们引入了微流体“单通道,多阶段”免疫印迹策略。多步骤测定法执行所有免疫印迹步骤:分离,固定化蛋白的固定化,固定蛋白的抗体探测以及所有临时洗涤步骤。可编程的低分散电泳传输消除了对泵和阀门的需求。三维本体光反应水凝胶消除了人工印迹。除了简化的操作和接口外,通过我们的3D纳米多孔反应性水凝胶进行定向电泳运输,在捕获效率(与膜电印迹法)相当的同时,还节省了试剂消耗量(约1 ng),与最新技术相比,具有卓越的性能。经验和规模分析的支持。我们将完全集成的微流化验技术应用于(/)最低限度加工的人类前列腺癌细胞裂解液(检测限为1.1 pg)和(ii)转移性前列腺癌患者的粗血清中内源性前列腺特异性抗原同工型的蛋白质测量。单仪器功能为高通量靶向蛋白质组学建立了可扩展的微流体框架,这与通过强大的蛋白质生物标志物验证,针对功能蛋白质组学的新抗体探针的系统表征,以及更广泛地与人类生物样本库表征有关的个性化医学有关。

著录项

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  • 作者单位

    Department of Bioengineering, Berkeley-University of California San Francisco Graduate Program in Bioengineering,University of California, Berkeley, CA 94720,University of California, Berkeley-University of California San Francisco Graduate Program in Bioengineering,University of California, Berkeley, CA 94720;

    Department of Bioengineering, Berkeley-University of California San Francisco Graduate Program in Bioengineering,University of California, Berkeley, CA 94720;

    Department of Urology, Stanford University School of Medicine, Stanford, CA 94305;

    Department of Bioengineering, Berkeley-University of California San Francisco Graduate Program in Bioengineering,University of California, Berkeley, CA 94720,University of California, Berkeley-University of California San Francisco Graduate Program in Bioengineering,University of California, Berkeley, CA 94720;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    isoelectric focusing; nanoporous reactive polymers; lab-on-a-chip; western blotting; antibody selection;

    机译:等电聚焦纳米多孔反应性聚合物;芯片实验室免疫印迹抗体选择;
  • 入库时间 2022-08-18 00:40:21

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