Department of Molecular Science and Technology, Ajou University, Suwon 16499, Korea.
Biosensors (Basel). 2020 Jul 31;10(8):87. doi: 10.3390/bios10080087.
In traditional colorimetric lateral flow immunoassay (LFI) using gold nanoparticles (AuNPs) as a probe, additional optical transducers are required to quantify the signal intensity of the test line because it presents as a single red-colored line. In order to eliminate external equipment, the LFI signal should be quantifiable by the naked eye without the involvement of optical instruments. Given this objective, the single line test zone of conventional LFI was converted to several spots that formed herringbone patterns. When the sandwich immunoassay was performed on a newly developed semi-quantitative (SQ)-LFI system using AuNPs as an optical probe, the spots were colorized and the number of colored spots increased proportionally with the analyte concentration. By counting the number of colored spots, the analyte concentration can be easily estimated with the naked eye. To demonstrate the applicability of the SQ-LFI system in practical immunoanalysis, microalbumin, which is a diagnostic marker for renal failure, was analyzed using microalbumin-spiked artificial urine samples. Using the SQ-LFI system, the calibration results for artificial urine-based microalbumin were studied, ranging from 0 to 500 μg/mL, covering the required clinical detection range, and the limit of detection (LOD) value was calculated to be 15.5 μg/mL. Thus, the SQ-LFI system provides an avenue for the realization of an efficient quantification diagnostic device in resource-limited conditions.
在传统的使用金纳米粒子 (AuNPs) 作为探针的比色横向流动免疫分析 (LFI) 中,由于测试线呈现单一红色线,因此需要额外的光学换能器来定量测试线的信号强度。为了消除外部设备,LFI 信号应该可以通过肉眼进行定量,而无需使用光学仪器。基于此目标,将传统 LFI 的单线测试区转换为形成人字形图案的几个点。当在使用 AuNPs 作为光学探针的新开发的半定量 (SQ)-LFI 系统上进行夹心免疫分析时,斑点被着色,并且着色斑点的数量与分析物浓度成正比增加。通过计数着色斑点的数量,可以用肉眼轻松估计分析物的浓度。为了证明 SQ-LFI 系统在实际免疫分析中的适用性,使用含有微白蛋白的人工尿液样本分析了作为肾衰竭诊断标志物的微白蛋白。使用 SQ-LFI 系统,对基于人工尿液的微白蛋白的校准结果进行了研究,范围从 0 到 500 μg/mL,涵盖了所需的临床检测范围,并且计算出的检测限 (LOD) 值为 15.5 μg/mL。因此,SQ-LFI 系统为在资源有限的情况下实现高效定量诊断设备提供了途径。