Kakkar Saloni, Gupta Payal, Singh Yadav Shiv Pratap, Raj Divakar, Singh Garima, Chauhan Sakshi, Mishra Manoj Kumar, Martín-Ortega Elena, Chiussi Stefano, Kant Krishna
Council of Scientific and Industrial Research (CSIR)- Centre for Cellular & Molecular Biology (CCMB), Hyderabad, 500007, India.
Department of Biotechnology, Graphic Era (Deemed to be University), Dehradun, 248002, India.
Mater Today Bio. 2024 Aug 6;28:101188. doi: 10.1016/j.mtbio.2024.101188. eCollection 2024 Oct.
Paper based point-of-care (PoC) detection platforms applying lateral flow assays (LFAs) have gained paramount approval in the diagnostic domain as well as in environmental applications owing to their ease of utility, low cost, and rapid signal readout. It has centralized the aspect of self-evaluation exhibiting promising potential in the last global pandemic era of Covid-19 implementing rapid management of public health in remote areas. In this perspective, the present review is focused towards landscaping the current framework of LFAs along with integration of components and characteristics for improving the assay by pushing the detection limits. The review highlights the synergistic aspects of assay designing, sample enrichment strategies, novel nanomaterials-based signal transducers, and high-end analytical techniques that contribute significantly towards sensitivity and specificity enhancement. Various recent studies are discussed supporting the innovations in LFA systems that focus upon the accuracy and reliability of rapid PoC testing. The review also provides a comprehensive overview of all the possible difficulties in commercialization of LFAs subjecting its applicability to pathogen surveillance, water and food testing, disease diagnostics, as well as to agriculture and environmental issues.
基于纸的即时检测(PoC)平台采用侧向流动分析(LFA),因其使用方便、成本低和信号读取迅速,在诊断领域以及环境应用中获得了极高的认可。在过去新冠疫情的全球大流行时代,它集中了自我评估的方面,在偏远地区实施公共卫生快速管理方面展现出了巨大潜力。从这个角度来看,本综述旨在勾勒LFA的当前框架,以及整合其组件和特性,通过降低检测限来改进分析方法。该综述强调了分析设计、样品富集策略、新型纳米材料基信号传感器以及高端分析技术的协同作用,这些对提高灵敏度和特异性有显著贡献。讨论了最近的各种研究,这些研究支持LFA系统的创新,这些创新侧重于快速PoC检测的准确性和可靠性。该综述还全面概述了LFA商业化过程中所有可能遇到的困难,涉及其在病原体监测、水和食品检测、疾病诊断以及农业和环境问题中的适用性。