Optoelectronics Research Centre, University of Southampton, Southampton SO17 1BJ, UK.
Biosensors (Basel). 2018 Oct 20;8(4):97. doi: 10.3390/bios8040097.
Paper-based lateral flow devices (LFDs) are regarded as ideal low-cost diagnostic solutions for point-of-care (POC) scenarios that allow rapid detection of a single analyte within a fluidic sample, and have been in common use for a decade. In recent years, there has been an increasing need for rapid and simultaneous detection of multiple analytes present within a single sample and to facilitate this, we report here a novel solution-detection using a multi-path LFD created via the precise partitioning of the single flow-path of a standard LFD using our previously reported laser direct-write (LDW) technique. The multiple flow-paths allow the simultaneous detection of the different analytes individually within each of the parallel channels without any cross-reactivity. The appearance of coloured test lines in individual channels indicates the presence of the different analytes within a sample. We successfully present the use of a LDW-patterned multi-path LFD for multiplexed detection of a biomarker panel comprising C-reactive protein (CRP) and Serum amyloid A-1 (SAA1), used for the diagnosis of bacterial infections. Overall, we demonstrate the use of our LDW technique in the creation of a novel LFD that enables multiplexed detection of two inflammation markers within a single LFD providing a detection protocol that is comparatively more efficient than the standard sequential multiplexing procedure.
基于纸的横向流动器件 (LFD) 被认为是用于即时护理 (POC) 场景的理想低成本诊断解决方案,可在流体样本中快速检测单个分析物,并且已经使用了十年。近年来,人们越来越需要快速同时检测单个样本中存在的多种分析物,为此,我们在这里报告了一种新的解决方案-使用通过我们之前报道的激光直写 (LDW) 技术精确分割标准 LFD 的单个流道来创建的多路径 LFD 进行检测。多个流道允许在每个平行通道中单独同时检测不同的分析物,而不会发生任何交叉反应。各个通道中出现有色测试线表明样品中存在不同的分析物。我们成功地展示了使用 LDW 图案化多路径 LFD 对包括 C 反应蛋白 (CRP) 和血清淀粉样蛋白 A-1 (SAA1) 在内的生物标志物组进行多重检测的用途,用于细菌感染的诊断。总体而言,我们展示了我们的 LDW 技术在创建新型 LFD 中的应用,该新型 LFD 能够在单个 LFD 中同时检测两种炎症标志物,提供了一种比标准顺序多重检测程序更有效的检测方案。