University of Freiburg, Department of Microsystems Engineering, Laboratory for Sensors, Georges-Koehler Allee 103, 79110 Freiburg, Germany.
University of Freiburg, Department of Microsystems Engineering, Laboratory for Sensors, Georges-Koehler Allee 103, 79110 Freiburg, Germany.
Biosens Bioelectron. 2014 Aug 15;58:186-92. doi: 10.1016/j.bios.2014.02.058. Epub 2014 Mar 4.
Miniaturized diagnostic devices hold the promise of accelerate the specific and sensitive detection of various biomarkers, which can translate into many areas of medicine - from cheaper clinical trials, to early diagnosis and treatment of complex diseases. Therefore, we report on a disposable integrated chip-based capillary immunoassay featuring a microfluidic ELISA format combining electrochemical detection and low-cost fabrication employing a dry film photoresist, Vacrel(®) 8100. The readily accessible carboxylate groups on the material surface allow fast and high yield immobilization of biomolecules using amine-specific coupling via reactive esters requiring no laborious surface pretreatment. The integrated microfluidic system provides a convenient platform for a flow-through immunoassay. Capillary force is used for easy reagent delivery and loading the chip channel. We performed rapid quantification of serum level of substance P, a potential biomarker of acute neuroinflammation, using the developed microfluidic immunochip. Our miniaturized assay demonstrated a sensitive electrochemical detection of the antigen at 15.4pgml(-1) (11.5pM) using only 5µl of the biological fluid while cutting the total assay preparation time in half and the read-out time to 10min. Combining microfluidics and fabrication suitable for mass production with the capability of testing clinically relevant samples creates conditions for the construction of low-cost and portable point of care diagnostic devices with minimal auxiliary electronics.
微型诊断设备有望加速各种生物标志物的特异性和敏感性检测,这可以转化为医学的许多领域 - 从更便宜的临床试验,到复杂疾病的早期诊断和治疗。因此,我们报告了一种基于一次性集成芯片的毛细管免疫分析,该分析采用微流控 ELISA 格式,结合电化学检测和使用干膜光致抗蚀剂 Vacrel(®)8100 的低成本制造。该材料表面上易于获得的羧酸基团允许使用通过反应性酯的胺特异性偶联快速且高产率地固定生物分子,而无需繁琐的表面预处理。集成的微流控系统为流动通过免疫分析提供了便捷的平台。毛细作用力用于轻松试剂输送和芯片通道加载。我们使用开发的微流控免疫芯片快速定量了血清中物质 P 的水平,物质 P 是急性神经炎症的潜在生物标志物。我们的微型分析在仅使用 5µl 生物流体的情况下,以 15.4pgml(-1)(11.5pM)的灵敏度进行了电化学检测,同时将总分析准备时间缩短一半,读取时间缩短至 10min。将适合大规模生产的微流控和制造与测试临床相关样本的能力相结合,为构建具有最小辅助电子设备的低成本、便携式即时诊断设备创造了条件。