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Magnetic microspheres encoded with photoluminescent quantum dots for multiplexed detection

机译:用光致发光量子点编码的磁性微球,用于多重检测

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摘要

A combination of layer-by-layer (LBL) self-assembly and magnetic separation has been used to encode magnetic microspheres with multiple colours of photoluminescent semiconductor quantum dots (QDs).Magnetic separation increased the speed of the LBL process and led to high yields of encoded microspheres.This is important because it allows the full potential of QDs to be harnessed for optically encoded microspheres.The assembly process was investigated using fluorescence microscopy,transmission electron microscopy (TEM) and microelectrophoresis.The same assembly process was repeated on planar surfaces and investigated using atomic force microscopy (AFM) and UV/vis spectroscopy.Three sets of microspheres with different spectral codes were combined to form a suspension array that was used to screen for three different types of explosive in the same sample.Results were analyzed with a fluorescence microscope that decoded the microspheres and detected fluorescent reporter molecules bound to their surface.The results allowed individual explosives and mixtures of explosives to be detected in multiplexed immunoassays.
机译:层到层(LBL)自组装和磁分离的结合已被用于编码具有多种颜色的光致发光半导体量子点(QD)的磁性微球。磁分离提高了LBL处理的速度并导致了高产量这是很重要的,因为它可以将量子点的全部潜力用于光学编码的微球。使用荧光显微镜,透射电子显微镜(TEM)和微电泳研究了组装过程。在平面上重复了相同的组装过程并用原子力显微镜(AFM)和紫外/可见光谱法进行研究。将三组具有不同光谱代码的微球组合在一起,形成一个悬浮液阵列,用于筛选同一样品中的三种不同类型的炸药。荧光显微镜,对微球进行解码并检测与t结合的荧光报告分子结果使得可以在多重免疫分析中检测单个炸药和炸药混合物。

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