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侧向流检测法用于激素检测。

Lateral flow assays for hormone detection.

机构信息

Department of Chemical Engineering, Imperial College London, South Kensington, London, SW7 2BU, UK.

West China School of Basic Medical Sciences & Forensic Medicine, Sichuan University, Chengdu 610041, China.

出版信息

Lab Chip. 2022 Jun 28;22(13):2451-2475. doi: 10.1039/d1lc00960e.

Abstract

Endocrine diseases are the fifth most common cause of death and have a considerable impact on society given that they induce long-term morbidity in patients. For many decades, the measurement of hormones has been of great interest since this can be used to diagnose a plethora of pathological conditions. As a result, the endocrine testing market has experienced exponential growth. Several techniques have been utilised for the detection of hormones; however, they are expensive, laborious and require specialist training. Conversely, lateral flow assays (LFAs) are cheap (<£1) and rapid (<5 min) devices. LFAs typically rely on biochemical interactions between antibodies and antigens to produce coloured signals proportional to analyte concentrations, which can be visually inspected. Given their simplicity, LFAs are now considered the most attractive point-of-care device in medicine. However, the measurement of hormones in biofluids using LFAs faces many challenges including (i) the necessity for sensitive detection methods, (ii) the need for multiplexed devices for the confirmation of a diagnosis, and (iii) difficulties in sample preparation and pre-concentration. As such, most hormone LFAs remain in the research phase, and the few that have been commercialised require further optimisation before they can be employed for routine use. This review summarises the basic principles underlying lateral flow technology and provides an overview of recent advances, challenges, and potential solutions for the detection of hormone biomarkers LFAs. Finally, hormone LFA kits available on the market are presented, with a look towards future developments and trends in the field.

摘要

内分泌疾病是第五大常见死因,由于它们会导致患者长期患病,因此对社会有相当大的影响。几十年来,由于可以利用激素测量来诊断多种病理状况,因此激素测量一直备受关注。因此,内分泌测试市场经历了指数级的增长。已经使用了几种技术来检测激素;但是,它们昂贵、繁琐并且需要专业培训。相比之下,横向流动分析(LFA)是廉价(<£1)且快速(<5 分钟)的设备。LFA 通常依赖于抗体和抗原之间的生化相互作用来产生与分析物浓度成正比的有色信号,可以通过目视检查。由于其简单性,LFA 现在被认为是医学中最具吸引力的即时护理设备。但是,使用 LFAs 测量生物流体中的激素面临许多挑战,包括(i)需要灵敏的检测方法,(ii)需要用于诊断确认的多路复用设备,以及(iii)在样品制备和预浓缩方面的困难。因此,大多数激素 LFAs 仍处于研究阶段,而已经商业化的少数几种激素 LFAs 在常规使用之前还需要进一步优化。这篇综述总结了横向流动技术的基本原理,并概述了检测激素生物标志物 LFAs 的最新进展、挑战和潜在解决方案。最后,介绍了市场上可提供的激素 LFA 试剂盒,并展望了该领域的未来发展和趋势。

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