Lei Rongwei, Wang David, Arain Hufsa, Mohan Chandra
Department of Biomedical Engineering, University of Houston, Houston, TX 77004, USA.
Diagnostics (Basel). 2022 Apr 28;12(5):1107. doi: 10.3390/diagnostics12051107.
Vertical flow assays (VFAs) or flow-through assays have emerged as an alternate type of paper-based assay due to their faster detection time, larger sample volume capacity, and significantly higher multiplexing capabilities. They have been successfully employed to detect several different targets (polysaccharides, protein, and nucleic acids), although in a limited number of samples (serum, whole blood, plasma) compared to the more commonly known lateral flow assays (LFAs). The operation of a VFA relies mainly on gravity, coupled with capillary action or external force to help the sample flow through layers of stacked pads. With recent developments in this field, multiple layers of pads and signal readers have been optimized for more user-friendly operation, and VFAs have achieved a lower limit of detection for various analytes than the gold-standard methods. Thus, compared to the more widely used LFA, the VFA demonstrates certain advantages and is becoming an increasingly popular platform for obtaining qualitative and quantitative results in low-resource settings. Considering the wide application of gold nanoparticles (GNPs) in VFAs, we will mostly discuss (1) the design of GNP-based VFA along with its associated advantages/disadvantages, (2) fabrication and optimization of GNP-based VFAs for applications, and (3) the future outlook of flow-based assays for point-of-care testing (POCT) diagnostics.
垂直流分析(VFA)或流通式分析已成为一种基于纸张的替代分析类型,因为它们检测时间更快、样本容量更大且多路复用能力显著更高。它们已成功用于检测多种不同目标物(多糖、蛋白质和核酸),不过与更为人熟知的侧向流分析(LFA)相比,其检测的样本数量有限(血清、全血、血浆)。VFA的操作主要依靠重力,再加上毛细作用或外力来帮助样本流过堆叠垫的各层。随着该领域的最新发展,多层垫和信号读取器已得到优化,以实现更便于用户操作,并且VFA对各种分析物的检测下限已低于金标准方法。因此,与使用更为广泛的LFA相比,VFA显示出一定优势,并且正成为在资源匮乏环境中获得定性和定量结果的越来越受欢迎的平台。鉴于金纳米颗粒(GNP)在VFA中的广泛应用,我们将主要讨论(1)基于GNP的VFA的设计及其相关优缺点,(2)基于GNP的VFA用于实际应用的制备和优化,以及(3)基于流的即时检测(POCT)诊断分析的未来展望。