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Compact and Blinking-Suppressed Quantum Dots for Single-ParticleTracking in Live Cells

机译:单颗粒的紧凑型和闪烁抑制型量子点追踪活细胞

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摘要

Quantum dots (QDs) offer distinct advantages over organic dyes and fluorescent proteins for biological imaging applications because of their brightness, photostability, and tunability. However, a major limitation is that single QDs emit fluorescent light in an intermittent on-and-off fashion called “blinking”. Here we report the development of blinking-suppressed, relatively compact QDs that are able to maintain their favorable optical properties in aqueous solution. Specifically, we show that a linearly graded alloy shell can be grown on a small CdSe core via a precisely controlled layer-by-layer process, and that this graded shell leads to a dramatic suppression of QD blinking in both organic solvents and water. A substantial portion (>25%) of the resulting QDs does not blink (more than 99% of the time in the bright or “on” state). Theoretical modeling studies indicate that this type of linearly graded shell not only can minimize charge carrier access to surface traps but also can reduce lattice defects, both of which are believed to be responsiblefor carrier trapping and QD blinking. Further, we have evaluated thebiological utility of blinking-suppressed QDs coated with polyethyleneglycol (PEG)-based ligands and multidentate ligands. The results demonstratethat their optical properties are largely independent of surface coatingsand solvating media, and that the blinking-suppressed QDs can providecontinuous trajectories in live-cell receptor tracking studies.
机译:量子点(QD)的亮度,光稳定性和可调性使其在生物成像应用中具有优于有机染料和荧光蛋白的独特优势。但是,一个主要的限制是单个QD会以一种称为“闪烁”的断断续续的方式发射荧光。在这里,我们报告了眨眼抑制,相对紧凑的量子点的发展,这些量子点能够在水溶液中保持其良好的光学性能。具体而言,我们表明,可以通过精确控制的逐层过程,将线性渐变合金壳生长在小型CdSe核芯上,并且这种渐变壳可以显着抑制有机溶剂和水中的QD闪烁。所得的QD的很大一部分(> 25%)不闪烁(超过99%的时间处于亮或“开”状态)。理论建模研究表明,这种类型的线性梯度壳不仅可以最大程度地减少载流子对表面陷阱的访问,还可以减少晶格缺陷,这两者都是造成缺陷的原因。用于载波捕获和QD闪烁。此外,我们评估了聚乙烯涂层的眨眼抑制量子点的生物学效用基于乙二醇(PEG)的配体和多齿配体。结果表明他们的光学特性很大程度上与表面涂层无关和溶剂化介质,并且闪烁抑制的量子点可以提供活细胞受体追踪研究中的连续轨迹。

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