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Micelle-templated composite quantum dots for super-resolution imaging

机译:用于超分辨率成像的胶束模板复合量子点

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摘要

Quantum dots (QDs) have tremendous potential for biomedical imaging, including superresolution techniques that permit imaging below the diffraction limit. However, most QDs are produced via organic methods, and hence require surface treatment to render them water-soluble for biological applications. Previously, we reported a micelle-templating method that yields nanocomposites containing multiple core/shell ZnS-CdSe QDs within the same nanocarrier, increasing overall particle brightness and virtually eliminating QD blinking. Here, this technique is extended to the encapsulation of Mn-doped ZnSe QDs (Mn-ZnSe QDs), which have potential applications in super-resolution imaging as a result of the introduction of Mn~(2+) dopant energy levels. The size, shape and fluorescence characteristics of these doped QD-micelles were compared to those of micelles created using core/shell ZnS-CdSe QDs (ZnS-CdSe QDmicelles). Additionally, the stability of both types of particles to photo-oxidation was investigated. Compared to commercial QDs, micelle-templated QDs demonstrated superior fluorescence intensity, higher signal-to-noise ratios, and greater stability against photooxidization, while reducing blinking. Additionally, the fluorescence of doped QD-micelles could be modulated from a bright 'on' state to a dark 'off' state, with a modulation depth of up to 76%, suggesting the potential of doped QD-micelles for applications in super-resolution imaging.
机译:量子点(QD)对于生物医学成像具有巨大的潜力,包括允许在衍射极限以下成像的超分辨率技术。但是,大多数QD是通过有机方法生产的,因此需要进行表面处理以使其在生物应用中具有水溶性。以前,我们报道了一种胶束模板化方法,该方法可在同一纳米载体中产生包含多个核/壳ZnS-CdSe QD的纳米复合材料,从而提高了整体颗粒的亮度并几乎消除了QD闪烁。在这里,这项技术扩展到了Mn掺杂的ZnSe QDs(Mn-ZnSe QDs)的封装,由于Mn〜(2+)掺杂能级的引入,它们在超分辨率成像中具有潜在的应用。将这些掺杂的QD胶束的大小,形状和荧光特性与使用核/壳ZnS-CdSe QD胶束(ZnS-CdSe QDmicelles)创建的胶束进行了比较。另外,研究了两种类型的颗粒对光氧化的稳定性。与商业量子点相比,以胶束为模板的量子点表现出优异的荧光强度,更高的信噪比和更高的抗光氧化稳定性,同时减少了闪烁。此外,可以将掺杂的QD胶束的荧光从明亮的“开”状​​态调制为暗的“关”状态,调制深度高达76%,这表明掺杂的QD胶束在超高密度半导体中的应用潜力很大。分辨率成像。

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