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Identification of quantum dots labeled metallothionein by fast scanning laser-induced breakdown spectroscopy

机译:快速扫描激光诱导击穿光谱法鉴定标记为金属硫蛋白的量子点

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摘要

The technique described in this paper allows detection of quantum dots (QDs) specifically deposited on the polystyrene surface by laser-induced breakdown spectroscopy (LIBS). Using LIBS, the distribution of QDs or their conjugates with biomolecules deposited on the surface can be observed, regardless of the fact if they exhibit fluorescence or not. QDs deposited on the specific surface of polystyrene microplate in the form of spots are detected by determination of the metal included in the QDs structure. Cd-containing QDs (CdS, CdTe) stabilized with mercaptopropionic (MPA) or mercaptosuccinic (MSA) acid, respectively, alone or in the form of conjugates with metallothionein (MT) biomolecule are determined by using the 508.58 nm Cd emission line. The observed absolute detection limit for Cd in CdTe QDs conjugates with MT in one spot was 3 ng Cd. Due to the high sensitivity of this technique, the immunoanalysis in combination with LIBS was also investigated. Cd spatial distribution in sandwich immunoassay was detected.
机译:本文描述的技术允许通过激光诱导击穿光谱法(LIBS)检测专门沉积在聚苯乙烯表面的量子点(QD)。使用LIBS,可以观察QD或其结合物与沉积在表面的生物分子的分布,而无论它们是否显示荧光。通过确定QDs结构中包含的金属来检测以斑点形式沉积在聚苯乙烯微板特定表面上的QD。通过使用508.58 nm Cd发射线确定分别用巯基丙酸(MPA)或巯基琥珀酸(MSA)酸稳定的含Cd QD(CdS,CdTe),或与金属硫蛋白(MT)生物分子结合的形式。在一个点上具有MT的CdTe QDs共轭物中,所观察到的Cd的绝对检测极限为3 ng Cd。由于这项技术的高灵敏度,还对与LIBS结合的免疫分析进行了研究。在夹心免疫分析中检测到镉的空间分布。

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