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水凝胶微滴阵列与被捕获的抗体功能化珠用于多重蛋白质分析。

Hydrogel droplet microarrays with trapped antibody-functionalized beads for multiplexed protein analysis.

机构信息

Biomedical Engineering Department, McGill University, Montréal, QC H3A 1A4, Canada.

出版信息

Lab Chip. 2011 Feb 7;11(3):528-34. doi: 10.1039/c0lc00291g. Epub 2010 Dec 1.

Abstract

Antibody microarrays are a powerful tool for rapid, multiplexed profiling of proteins. 3D microarray substrates have been developed to improve binding capacity, assay sensitivity, and mass transport, however, they often rely on photopolymers which are difficult to manufacture and have a small pore size that limits mass transport and demands long incubation time. Here, we present a novel 3D antibody microarray format based on the entrapment of antibody-coated microbeads within alginate droplets that were spotted onto a glass slide using an inkjet. Owing to the low concentration of alginate used, the gels were highly porous to proteins, and together with the 3D architecture helped enhance mass transport during the assays. The spotting parameters were optimized for the attachment of the alginate to the substrate. Beads with 0.2 µm, 0.5 µm and 1 µm diameter were tested and 1 µm beads were selected based on their superior retention within the hydrogel. The beads were found to be distributed within the entire volume of the gel droplet using confocal microscopy. The assay time and the concentration of beads in the gels were investigated for maximal binding signal using one-step immunoassays. As a proof of concept, six proteins including cytokines (TNFα, IL-8 and MIP/CCL4), breast cancer biomarkers (CEA and HER2) and one cancer-related protein (ENG) were profiled in multiplex using sandwich assays down to pg mL(-1) concentrations with 1 h incubation without agitation in both buffer solutions and 10% serum. These results illustrate the potential of beads-in-gel microarrays for highly sensitive and multiplexed protein analysis.

摘要

抗体微阵列是一种快速、多重分析蛋白质的强大工具。已经开发出三维微阵列基底以提高结合能力、分析灵敏度和质量传输,然而,它们通常依赖于难以制造且孔径小的光聚合物,这限制了质量传输并需要长时间的孵育时间。在这里,我们提出了一种基于抗体包被微球在藻酸盐液滴中捕获的新型三维抗体微阵列格式,这些液滴使用喷墨打印点样到载玻片上。由于使用的藻酸盐浓度低,凝胶对蛋白质具有高度多孔性,并且与 3D 结构一起有助于在分析过程中增强质量传输。优化了点样参数以将藻酸盐附着到基底上。测试了 0.2 µm、0.5 µm 和 1 µm 直径的微球,并根据其在水凝胶中的优越保留性选择了 1 µm 微球。使用共聚焦显微镜发现微球分布在凝胶液滴的整个体积内。通过一步免疫测定法研究了最大结合信号的实验时间和凝胶中微球的浓度。作为概念验证,使用夹心测定法在缓冲液和 10%血清中在 1 小时不搅拌孵育下,以 pg mL(-1)浓度级检测到六种蛋白质,包括细胞因子(TNFα、IL-8 和 MIP/CCL4)、乳腺癌生物标志物(CEA 和 HER2)和一种癌症相关蛋白(ENG),实现了多重分析。这些结果说明了珠子凝胶微阵列在高灵敏度和多重蛋白质分析中的潜力。

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