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CdSe/ZnS量子点对聚苯乙烯微珠的多色编码及其在免疫分析中的应用。

Multi-color encoding of polystyrene microbeads with CdSe/ZnS quantum dots and its application in immunoassay.

作者信息

Wang Hai-Qiao, Wang Jian-Hao, Li Yong-Qiang, Li Xiu-Qing, Liu Tian-Cai, Huang Zhen-Li, Zhao Yuan-Di

机构信息

Key Laboratory of Biomedical Photonics of Ministry of Education - Wuhan National Laboratory for Optoelectronics, College of Life Science and Technology, Huazhong University of Science and Technology, Wuhan, HuBei, PR China.

出版信息

J Colloid Interface Sci. 2007 Dec 15;316(2):622-7. doi: 10.1016/j.jcis.2007.08.065. Epub 2007 Sep 1.

Abstract

Different diameter CdSe/ZnS semiconductor nanocrystals (average diameter: from approximately 3.5 to approximately 20 nm), quantum dots (QDs) were synthesized by changing the nucleation time, using organometallic reagents. These quantum dots possess narrow and symmetrical fluorescent emissions. The emission wavelengths of these composite dots span most of the visible spectrum from 500 through 700 nm. Furthermore, it is found that the quantum dots with an emission at approximately 590 nm, tend to have a good quantum yield (such as Phi(590)=43.5%). While the emission wavelength of prepared CdSe/ZnS QDs shifts toward blue or red from 590 nm, the quantum yield tends to decrease. After that, optical encoding of microbeads with these quantum dots was carried out, and the spectra of encoded beads were identified. The result indicates that, to identify the encoded beads with different emission wavelengths and emission intensities, it is needed to acquire and differentiate the spectra of beads. After immobilized with human IgG, the encoded beads were used to detect the corresponding antibody in solution. The result indicates that the encoded beads can detect the antibody signal effectively. And the effective detection range of the antibody is about 2-15 microM.

摘要

通过改变成核时间,使用有机金属试剂合成了不同直径的CdSe/ZnS半导体纳米晶体(平均直径:约3.5至约20 nm),即量子点(QDs)。这些量子点具有窄且对称的荧光发射。这些复合点的发射波长覆盖了从500到700 nm的大部分可见光谱。此外,发现发射波长约为590 nm的量子点往往具有良好的量子产率(例如Phi(590)=43.5%)。当制备的CdSe/ZnS量子点的发射波长从590 nm向蓝色或红色移动时,量子产率往往会降低。之后,用这些量子点对微珠进行光学编码,并识别编码微珠的光谱。结果表明,为了识别具有不同发射波长和发射强度的编码微珠,需要获取并区分微珠的光谱。用人IgG固定后,编码微珠用于检测溶液中的相应抗体。结果表明,编码微珠能够有效地检测抗体信号。并且抗体的有效检测范围约为2 - 15 microM。

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