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Multicolor quantum dot nanobeads based fluorescence-linked immunosorbent assay for highly sensitive multiplexed detection

机译:基于多色量子点纳米甲型的荧光连接免疫吸附测定,用于高敏感的多重检测

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摘要

Improvement of detection sensitivity and achievement of multiplexed detection using a fluorescence-linked immunosorbent assay (FLISA) platform are necessary developments to meet increasing clinical demands. Herein, a novel multicolor quantum dot nanobead (QDNB)-based FLISA platform for highly sensitive multiplexed detection of lung cancer tumor markers has been established. In this proposed platform, three-color QDNBs (green, yellow and red) act as fluorescent labels, completely eliminating energy transfer between different color QDNBs to allow multiplexed detection, as well as achieving high detection sensitivity through use of a fluorescence amplification strategy. We demonstrated three-plex detection of model lung cancer tumor markers (SCCA, CYFRA21-1 and CEA) using this QDNB-based FLISA platform, achieving 100-fold improvement in detection sensitivity compared to R-phycoerythrin (PE)-based FLISA approaches because of signal amplification caused by QDNBs. Moreover, clinical validation experiments performed on human serum samples demonstrated that results obtained using QDNB-based FLISA are consistent with those obtained using the current clinical gold-standard method, the electrochemiluminescence immunoassay (ECLIA). Therefore, the strategy of using multicolor QDNBs as fluorescent labels creates a versatile route by which to improve detection sensitivity and allow construction of multiplexed fluorescent biosensors.
机译:使用荧光连接的免疫吸附测定(FLISA)平台的检测灵敏度提高和多重检测的实现是必要的,以满足增加临床需求。在此,已经建立了一种用于高敏感的肺癌肿瘤标志物的高敏感复用检测的新型多色量子点纳米圈(QDNB)的血压平台。在这一提出的平台中,三色QDNBS(绿色,黄色和红色)充当荧光标记,完全消除不同颜色QDNB之间的能量转移,以允许多路复用检测,以及通过使用荧光扩增策略来实现高检测灵敏度。我们使用该基于QDNB的Flisa平台展示了三种肺癌肿瘤标志物(SCCA,CYFRA21-1和CEA)的三个Plex检测,与R-Phycoerythrin(PE)相比,获得了100倍的检测灵敏度的改善,因为基于R-Phycoerythrin(PE)的Flisa方法是因为QDNBS引起的信号放大。此外,对人血清样品进行的临床验证实验证明,使用基于QDNB的FLISA获得的结果与使用当前临床金标准方法,电化学发光免疫测定(Eclia)得到的结果一致。因此,使用多色QDNBS作为荧光标记的策略创造了一种通用的路线,提高了检测灵敏度并允许复用荧光生物传感器的构造。

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  • 来源
    《Sensors and Actuators》 |2021年第7期|129827.1-129827.7|共7页
  • 作者单位

    Stare Key Lab of Metal Matrix Composites School of Materials Science and Engineering Shanghai Jiao Tong University 800 Dongchuan Road Shanghai 200240 PR China;

    Stare Key Lab of Metal Matrix Composites School of Materials Science and Engineering Shanghai Jiao Tong University 800 Dongchuan Road Shanghai 200240 PR China;

    Stare Key Lab of Metal Matrix Composites School of Materials Science and Engineering Shanghai Jiao Tong University 800 Dongchuan Road Shanghai 200240 PR China;

    Xinhua Hospital Affiliated to Shanghai Jiao Tong University School of Medicine Shanghai Jiao Tong University 1665 Kongjiang Road Shanghai 200092 PR China;

    Xinhua Hospital Affiliated to Shanghai Jiao Tong University School of Medicine Shanghai Jiao Tong University 1665 Kongjiang Road Shanghai 200092 PR China;

    Institute of Nano Biomedicine and Engineering Key Laboratory of Thin Film and Microfabrication Technology of Ministry of Education Department of Instrument Science and Engineering School of Electronic Information and Electrical Engineering National Center for Translational Medicine Collaborative Innovational Center for System Biology Shanghai Jiao Tong University 800 Dongchuan Road Shanghai 200240 PR China;

    Stare Key Lab of Metal Matrix Composites School of Materials Science and Engineering Shanghai Jiao Tong University 800 Dongchuan Road Shanghai 200240 PR China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Quantum dot nanobeads; Fluorescence amplification; Energy transfer-free; Fluorescence-linked immunosorbent assay; (FLISA); Multiplexed detection;

    机译:量子点纳米孔;荧光扩增;能量无转移;荧光连接的免疫吸附试验;(flisa);多路复用检测;

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