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用于侧流检测的光致发光分子和材料作为诊断报告物。

Photoluminescent Molecules and Materials as Diagnostic Reporters in Lateral Flow Assays.

机构信息

Department of Chemistry, University of Houston, Houston, Texas 77204, United States.

Department of Chemical and Biomolecular Engineering, University of Houston, Houston, Texas 77204, United States.

出版信息

ACS Appl Bio Mater. 2022 Jan 17;5(1):82-96. doi: 10.1021/acsabm.1c01051. Epub 2021 Dec 27.

Abstract

The lateral flow assay (LFA) is a point-of-care diagnostic test commonly available in an over-the-counter format because of its simplicity, speed, low cost, and portability. The reporter particles in these assays are among their most significant components because they perform the diagnostic readout and dictate the test's sensitivity. Today, gold nanoparticles are frequently used as reporters, but recent work focusing on photoluminescent-based reporter technologies has pushed LFAs to better performance. These efforts have focused specifically on reporters made of organic fluorophores, quantum dots, lanthanide chelates, persistent luminescent phosphors, and upconversion phosphors. In most cases, photoluminescent reporters show enhanced sensitivity compared to conventional gold nanoparticle-based assays. Here, we examine the advantages and disadvantages of these different reporters and highlight their potential benefits in LFAs. Our assessment shows that photoluminescent-based LFAs can not only reach lower detection limits than LFAs with traditional reporters, but they also can be capable of quantitative and multiplex analyte detection. As a result, the photoluminescent reporters make LFAs well-suited for medical diagnostics, the food and agricultural industry, and environmental testing.

摘要

侧向流动分析(LFA)是一种即时诊断检测方法,由于其简单、快速、低成本和便携性,通常以非处方格式提供。这些检测中的报告颗粒是其最重要的组成部分之一,因为它们执行诊断读出并决定测试的灵敏度。如今,金纳米颗粒经常被用作报告颗粒,但最近专注于基于光致发光的报告技术的工作已经推动 LFAs 实现更好的性能。这些努力特别集中在由有机荧光团、量子点、镧系螯合物、持久发光磷光体和上转换磷光体制成的报告颗粒上。在大多数情况下,与基于传统金纳米颗粒的检测相比,光致发光报告颗粒显示出更高的灵敏度。在这里,我们检查了这些不同报告颗粒的优缺点,并强调了它们在 LFAs 中的潜在优势。我们的评估表明,基于光致发光的 LFAs 不仅可以达到比传统报告颗粒更低的检测限,而且还可以进行定量和多重分析物检测。因此,光致发光报告颗粒使 LFAs 非常适合医疗诊断、食品和农业行业以及环境测试。

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