Department of Analytical Chemistry, Faculty of Chemistry, University of Tabriz, 51666 1647, Tabriz, Iran.
Kidney Research Center, Tabriz University of Medical Sciences, Tabriz, Iran; Biotechnology Research Center, Tabriz University of Medical Sciences, Tabriz, Iran.
Talanta. 2022 Jun 1;243:123330. doi: 10.1016/j.talanta.2022.123330. Epub 2022 Feb 22.
Up-to-date diagnostics is globally improved by point-of-care testing (POCT) analysis and bedside research works. Development in POCT analysis has been provided mostly by forward-looking engineering technology for biosensing and sensing assessments. Lately, lateral flow assays (LFAs) have attracted a lot of interest as a result of their noteworthy benefits including cost-effectiveness, better portability, being operator friendly and rapid detection. This technique has been employed broadly for monitoring diverse biomarkers linked to ultrasensitive detection of pathogenic bacteria, ecological monitoring, consumer protection, and infectious diseases. LFA analyses established on qualitative and optical outcomes have boosted the objectivity and data efficiency of the assessments. Therefore, developing novel methods with the capability of providing reliable and quantitative information regarding a target analyte in a model and preserving the qualities of LFAs is of great necessity. In this review, the main principles of LFAs, challenges, and prospects for more development in this field in sensing pathogenic bacteria have been summarized. Subsequently, visually-read LFAs improvement to further progressive platforms have been explored by considering the prospects of this very flexible method for ultrasensitive detection of pathogenic bacteria. In addition, novel labeling methodologies, electrochemical and optical transducers are described. Also, recent developments in these detection methods elements in combination with other considered approaches have been highlighted.
即时诊断通过即时检测(POCT)分析和床边研究工作得到了全球改善。POCT 分析的发展主要得益于生物传感和传感评估的前瞻性工程技术。最近,侧向流动分析(LFA)因其具有成本效益、更好的便携性、易于操作和快速检测等显著优势而引起了广泛关注。该技术已广泛用于监测与超敏检测病原菌、生态监测、消费者保护和传染病相关的各种生物标志物。基于定性和光学结果的 LFA 分析提高了评估的客观性和数据效率。因此,开发具有在模型中提供有关目标分析物的可靠和定量信息的能力并保留 LFAs 特性的新方法是非常必要的。在这篇综述中,总结了 LFAs 的主要原理、挑战以及在该领域中用于感测病原菌的进一步发展的前景。随后,通过考虑这种非常灵活的病原菌超敏检测方法的前景,探讨了目视可读 LFAs 的改进。此外,还描述了新型标记方法学、电化学和光学换能器。还强调了这些检测方法元素与其他考虑方法的结合的最新发展。