Kwon Yewon, Kim Dami, Kim Sanghyo
Department of Bionanotechnology, Gachon University, Seongnam 13120, Republic of Korea.
Philmedi R&D Center, Philmedi Incorporation, 33, Sangimakol-ro, 62beon-gil, Jungwon-gu, Seognam, 13211, Republic of Korea.
Anal Methods. 2023 Aug 24;15(33):4168-4178. doi: 10.1039/d3ay01021j.
Quantitative analysis for lateral flow immunoassay (LFA) strips was conducted continuously. Quantitative analysis means measuring concentration, which represents the number of molecules per unit volume. In this study, we designed a quantitative injection (QI) strip by modifying the structure of general LFA strips to inject the same unit volume. To achieve the injection of the same unit volume, we used water-soluble paper and magnet. In addition, the QI strip was fabricated to enable the physical separation of the gold conjugate pad from the nitrocellulose membrane (NC membrane) at the optimized time after sample injection. The optimized time refers to the time from the point at which the sample started flowing on the NC membrane to the point at which the strip was separated. At the samples of same concentration, the LFA strip increases detection signals as the volume of injected sample increases. In contrast to the LFA strip, the QI strip maintained consistent detection signals even with increasing volume of injected sample. Furthermore, the QI strip demonstrated an 11-fold lower deviation compared to the LFA strip. These results are attributed to the separation function of the QI strip. In conclusion, the QI strip is more suitable for quantitative analysis compared to the LFA strip due to the same unit volume without additional equipment such as a pipette. This study is expected to contribute to the development of user-friendly POCT and strip-based quantitative analysis.
对侧向流动免疫分析(LFA)试纸条进行了连续的定量分析。定量分析意味着测量浓度,浓度代表单位体积内的分子数量。在本研究中,我们通过修改普通LFA试纸条的结构设计了一种定量注射(QI)试纸条,以注入相同的单位体积。为了实现相同单位体积的注射,我们使用了水溶性纸和磁铁。此外,QI试纸条的制作使得在样品注入后的最佳时间能够将金标记结合垫与硝酸纤维素膜(NC膜)物理分离。最佳时间是指样品开始在NC膜上流动到试纸条分离的时间点。在相同浓度的样品中,LFA试纸条随着注入样品体积的增加而增加检测信号。与LFA试纸条不同,即使注入样品的体积增加,QI试纸条仍保持一致的检测信号。此外,与LFA试纸条相比,QI试纸条的偏差低11倍。这些结果归因于QI试纸条的分离功能。总之,由于无需移液器等额外设备即可实现相同的单位体积,QI试纸条比LFA试纸条更适合定量分析。本研究有望为用户友好型即时检验(POCT)和基于试纸条的定量分析的发展做出贡献。