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The Application of Fluorescent Quantum Dots to Confocal Multiphoton and Electron Microscopic Imaging

机译:荧光量子点在共聚焦多光子和电子显微镜成像中的应用

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摘要

Fluorescent quantum dots are emerging as an important tool for imaging cells and tissues, and their unique optical and physical properties have captured the attention of the research community. The most common types of commercially available quantum dots consist of a nanocrystalline semiconductor core composed of cadmium selenide with a zinc sulfide capping layer and an outer polymer layer to facilitate conjugation to targeting biomolecules such as immunoglobulins. They exhibit high fluorescent quantum yields and have large absorption cross-sections, possess excellent photostability, and can be synthesized so that their narrow-band fluorescence emission can occur in a wide spectrum of colors. These properties make them excellent candidates for serving as multiplexing molecular beacons using a variety of imaging modalities including highly correlated microscopies. Whereas much attention has been focused on quantum-dot applications for live-cell imaging, we have sought to characterize and exploit their utility for enabling simultaneous multiprotein immunolabeling in fixed cells and tissues. Considerations for their application to immunolabeling for correlated light and electron microscopic analysis are discussed.
机译:荧光量子点正在成为一种使细胞和组织成像的重要工具,其独特的光学和物理性质引起了研究界的关注。商业上最常见的量子点类型包括由硒化镉和硫化锌覆盖层组成的纳米晶半导体核,以及有助于与目标生物分子(例如免疫球蛋白)结合的外部聚合物层。它们表现出高的荧光量子产率并且具有大的吸收截面,具有优异的光稳定性,并且可以被合成,使得它们的窄带荧光发射可以在宽范围的颜色中发生。这些特性使它们成为使用多种成像方式(包括高度相关的显微镜检查)作为分子信标多路复用的极佳候选者。尽管已经将大量注意力集中在用于活细胞成像的量子点应用上,但我们已试图表征和利用其在固定细胞和组织中同时进行多蛋白免疫标记的实用性。讨论了将它们应用于相关光和电子显微镜分析的免疫标记的注意事项。

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