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Applications of quantum dots as probes in immunosensing of small-sized analytes

机译:量子点作为探针在小型分析物免疫检测中的应用

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摘要

Quantum dots (QDs) are semiconductor nanoparticles with very interesting optical properties, like high quantum yield or narrow and size-tuneable fluorescence spectra. Current applications of QDs are widespread, their use as fluorescence labels in bioassays being one of the most promising. These nanoparticles are usually conjugated to highly specific biomolecules like antibodies, oligonucleotides, enzymes or aptamers to improve assay selectivity. In this review, QD surface passivation, conjugation to biomolecules, and purification strategies are discussed with special emphasis to the development of QD-based immunoassays for the detection of low molecular weight compounds given the relevance of this sort of analytes in health, food safety, pharmaceutical, or environmental monitoring areas. The aim of this review is to summarise the main achievements attained so far and to initialise researchers in the field of antibody-based assays employing QDs as labels, such as fluorescence-linked immunosorbent assay (FLISA), fluorescence (or Förster) resonance energy transfer (FRET), immunochromatographic methods, and immunosensors.
机译:量子点(QD)是具有非常有趣的光学特性的半导体纳米粒子,例如高量子产率或窄且可调节尺寸的荧光光谱。量子点的当前应用是广泛的,它们在生物测定中用作荧光标记是最有前途的之一。这些纳米颗粒通常与高特异性生物分子(如抗体,寡核苷酸,酶或适体)缀合,以提高测定的选择性。在这篇综述中,鉴于这类分析物在健康,食品安全,食品和饮料中的重要性,讨论了QD表面钝化,与生物分子结合以及纯化策略,并特别着重于开发基于QD的检测低分子量化合物的免疫分析方法。制药或环境监测领域。这篇综述的目的是总结迄今为止所取得的主要成就,并初始化使用QD作为标记的基于抗体的检测领域的研究人员,例如荧光连锁免疫吸附测定(FLISA),荧光(或Fster共振)能量转移(FRET),免疫色谱方法和免疫传感器。

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