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Single-Line Flow Assay Platform Based on Orthogonal Emissive Upconversion Nanoparticles

机译:基于正交发射升高纳米粒子的单线流量测定平台

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摘要

Lateral flow assay (LFA) has played pivotal roles in many emergency public safety incidents, such as coronavirus disease diagnostics; however, the present double-line (test and control line) design strategy for LFA strips greatly restricts their applications in high-throughput quantitative analysis because the limited sample diffusion distance on the strips constrains the number of test/control lines. Herein, a novel single-line-based LFA (sLFA) strip, which combines test and control line, is developed by exploiting an orthogonal emissive upconversion nanoparticle (UCNP) as a signal reporter on the test line, where one emission can be used as a reporting signal and the other as a calibrating signal. This UCNP-based test line with an interior reference also can play a validating role as a control line, and hence capturing antibodies are not needed for control lines, greatly saving fabrication costs. As a proof-of-concept, this novel sLFA strip is successfully explored to accurately and rapidly detect aflatoxin B1. Moreover, due to the removal of control lines, such a novel strategy greatly reduces the strip size, facilitating the design of a testing array for multiple detections of different samples. The test line herein is designed in a ring shape, and several test rings are assembled to be a chip for the testing of multiple samples. To our knowledge, this is the first demonstration of single-line-based LFA strips, which will significantly improve the detection capacities and accuracies and reduce the testing costs of LFA strips in real sample applications ranging from food analysis to in vitro diagnostics.
机译:侧向流动分析(LFA)在许多紧急公共安全事件中发挥了关键作用,如冠状病毒疾病诊断;然而,目前LFA条带的双线(测试和控制线)设计策略极大地限制了其在高通量定量分析中的应用,因为条带上有限的样品扩散距离限制了测试/控制线的数量。在此,通过利用正交发射上转换纳米颗粒(UCNP)作为测试线上的信号报告器,开发了一种结合测试线和控制线的新型单线LFA(sLFA)条带,其中一个发射可用作报告信号,另一个可用作校准信号。这种带有内部参考的基于UCNP的测试线也可以作为控制线起到验证作用,因此控制线不需要捕获抗体,大大节省了制造成本。作为概念证明,这种新型的sLFA试纸条被成功地用于准确、快速地检测黄曲霉毒素B1。此外,由于去除了控制线,这种新策略大大减少了带钢尺寸,便于设计用于不同样本多次检测的测试阵列。本文中的测试线设计成环形,将几个测试环组装成芯片,用于测试多个样品。据我们所知,这是首次展示基于单线的LFA条,这将显著提高检测能力和准确度,并降低LFA条在从食品分析到体外诊断等实际样品应用中的检测成本。

著录项

  • 来源
    《Analytical chemistry》 |2021年第5期|共8页
  • 作者单位

    School of Environmental and Chemical Engineering Shanghai University;

    School of Environmental and Chemical Engineering Shanghai University;

    School of Environmental and Chemical Engineering Shanghai University;

    School of Environmental and Chemical Engineering Shanghai University;

    School of Environmental and Chemical Engineering Shanghai University;

    School of Medicine Jinan University;

    School of Environmental and Chemical Engineering Shanghai University;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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