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用于免疫测定的侧向流动聚合物芯片上的硅烷-葡聚糖化学

Silane-dextran chemistry on lateral flow polymer chips for immunoassays.

作者信息

Jönsson Christina, Aronsson Magnus, Rundström Gerd, Pettersson Christer, Mendel-Hartvig Ib, Bakker Jimmy, Martinsson Erik, Liedberg Bo, MacCraith Brian, Ohman Ove, Melin Jonas

机构信息

Amic AB, Uppsala, Sweden.

出版信息

Lab Chip. 2008 Jul;8(7):1191-7. doi: 10.1039/b800297e. Epub 2008 May 23.

DOI:10.1039/b800297e
PMID:18584097
Abstract

The prognosis for patients suffering from cardiovascular and many other diseases can be substantially improved if diagnosed at an early stage. High performance diagnostic testing using disposable microfluidic chips can provide a platform for realizing this vision. Amic AB (Uppsala, Sweden) has developed a new microfluidic test chip for sandwich immunoassays fabricated by injection molding of the cycloolefin-copolymer Zeonor. A highly ordered array of micropillars within the fluidic chip distributes the sample solution by capillary action. Since wetting of the pillar array surface is the only driving force for liquid distribution precise control of the surface chemistry is crucial. In this work we demonstrate a novel protocol for surface hydrophilization and antibody immobilization on cycloolefin-copolymer test chips, based on direct silanisation of the thermoplastic substrate. Dextran is subsequently covalently coupled to amino groups, thus providing a coating with a low contact angle suitable for antibody immobilization. The contact angle of dextran coated chips is stable for at least two months, which enables production of large batches that can be stored for extended periods of time. We demonstrate the utility of the presented platform and surface chemistry in a C-reactive protein assay with a detection limit of 2.6 ng ml(-1), a dynamic range of 10(2) and a coefficient of variance of 15%.

摘要

如果能在早期阶段进行诊断,患有心血管疾病和许多其他疾病的患者的预后可以得到显著改善。使用一次性微流控芯片的高性能诊断测试可以为实现这一愿景提供一个平台。瑞典乌普萨拉的Amic AB公司开发了一种用于夹心免疫测定的新型微流控测试芯片,该芯片由环烯烃共聚物Zeonor注塑成型制成。流体芯片内高度有序的微柱阵列通过毛细作用分布样品溶液。由于柱阵列表面的润湿是液体分布的唯一驱动力,因此精确控制表面化学至关重要。在这项工作中,我们展示了一种基于热塑性基材直接硅烷化的环烯烃共聚物测试芯片表面亲水化和抗体固定的新方案。随后将葡聚糖共价偶联到氨基上,从而提供一种具有低接触角的涂层,适合抗体固定。葡聚糖包被芯片的接触角至少两个月保持稳定,这使得能够生产可长时间储存的大批量产品。我们在C反应蛋白测定中展示了所提出的平台和表面化学的实用性,检测限为2.6 ng ml(-1),动态范围为10(2),变异系数为15%。

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