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Multiplexed Protein Quantification with Barcoded Hydrogel Microparticles

机译:带条形码的水凝胶微粒的多重蛋白质定量

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We demonstrate the use of graphically encoded hydrogel microparticles for the sensitive and high-throughput multiplexed detection of clinically relevant protein panels in complex media. Combining established antibody capture techniques with advances in both microfluidic synthesis and analysis, we detected 1-8 pg/mL amounts of three cytokines (interleuken-2, interleuken-4, and tumor necrosis factor alpha) in single and multiplexed assays without the need for filtration or blocking agents. A range of hydrogel porosities was investigated to ensure rapid diffusion of targets and reagents into the particle as well as to maintain the structural integrity of particles during rinsing procedures and high-velocity microfluidic scanning. Covalent incorporation of capture antibodies using a heterobifunctional poly(ethylene glycol) linker enabled one-step synthesis and functionalization of particles using only small amounts of valuable reagents. In addition to the use of three separate types of single-probe particles, the flexibility of the stop-flow lithography (SFL) method was leveraged to spatially segregate the three probes for the aforementioned target set on an individual encoded particle, thereby demonstrating the feasibility of single-particle diagnostic panels. This study establishes the gel-particle platform as a versatile tool for the efficient quantification of protein targets and significantly advances efforts to extend the advantages of both hydrogel substrates and particle-based arrays to the field of clinical proteomics.
机译:我们演示了图形编码的水凝胶微粒用于复杂介质中临床相关蛋白面板的灵敏和高通量多重检测的用途。将成熟的抗体捕获技术与微流体合成和分析方面的先进技术相结合,我们无需进行单次或多次试验即可检测到1-8 pg / mL量的三种细胞因子(interleuken-2,interleuken-4和肿瘤坏死因子α)过滤或封闭剂。研究了一定范围的水凝胶孔隙率,以确保目标物和试剂快速扩散到颗粒中,并在漂洗程序和高速微流体扫描过程中保持颗粒的结构完整性。使用异双功能聚(乙二醇)接头将捕获抗体共价掺入,仅需少量有价值的试剂即可一步一步合成和功能化颗粒。除了使用三种不同类型的单探针粒子外,还利用了停止流光刻(SFL)方法的灵活性,将上述目标集的三种探针在空间上隔离在单个编码粒子上,从而证明了可行性单颗粒诊断面板。这项研究建立了凝胶颗粒平台,作为有效定量蛋白质靶标的通用工具,并显着推动了将水凝胶基质和基于颗粒的阵列的优势扩展到临床蛋白质组学领域的努力。

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