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Planar lens integrated capillary action microfluidic immunoassay device for the optical detection of troponin I

机译:平面透镜集成的毛细管作用微流免疫测定装置用于光学检测肌钙蛋白I

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摘要

Optical based analysis in microfluidic and lab-on-a-chip systems are currently considered the gold standard methodology for the determination of end point reactions for various chemical and biological reaction processes. Typically, assays are performed using bulky ancillary apparatus such as microscopes and complex optical excitation and detection systems. Such instrumentation negates many of the advantages offered by device miniaturisation, particularly with respect to overall portability. In this article, we present a CO2 laser ablation technique for rapidly prototyping on-chip planar lenses, in conjunction with capillary action based autonomous microfluidics, to create a miniaturised and fully integrated optical biosensing platform. The presented self-aligned on-chip optical components offer an efficient means to direct excitation light within microfluidics and to directly couple light from a LED source. The device has been used in conjunction with a miniaturised and bespoke fluorescence detection platform to create a complete, palm sized system (≈60 × 80 × 60 mm) capable of performing fluoro-immunoassays. The system has been applied to the detection of cardiac Troponin I, one of the gold standard biomarkers for the diagnosis of acute myocardial infarction, achieving a lower detection limit of 0.08 ng/ml, which is at the threshold of clinically applicable concentrations. The portable nature of the complete system and the biomarker detection capabilities demonstrate the potential of the devised instrumentation for use as a medical diagnostics device at the point of care.
机译:目前,微流控和芯片实验室系统中基于光学的分析被认为是确定各种化学和生物反应过程终点反应的金标准方法。通常,使用大型辅助仪器(例如显微镜)和复杂的光学激发和检测系统进行测定。这样的仪器抵消了设备小型化所带来的许多优势,特别是在整体便携性方面。在本文中,我们提出了一种CO2激光烧蚀技术,用于快速制作芯片上平面透镜的原型,并结合基于毛细管作用的自主微流体技术,以创建一个小型化且完全集成的光学生物传感平台。提出的自对准芯片上光学组件提供了一种有效的方法,可以将激发光引导到微流体中,并直接耦合来自LED光源的光。该设备已与小型化的定制荧光检测平台结合使用,以创建一个完整的,手掌大小的系统(≈60×80×60 mm),能够进行荧光免疫测定。该系统已用于检测心肌肌钙蛋白I,这是诊断急性心肌梗死的金标准生物标志物之一,其检测下限为0.08μng/ ml,处于临床适用浓度的阈值。完整系统的便携性和生物标志物检测功能证明了这种设计的仪器在护理点可用作医疗诊断设备的潜力。

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