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Advances in fluorescence imaging with quantum dot bio-probes

机译:量子点生物探针在荧光成像中的进展

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摘要

After much effort in surface chemistry development and optimization by several groups, fluorescent semiconductor nanocrystals probes, also known as quantum dots or qdots, are now entering the realm of biological applications with much to offer to biologists. The road to success has been paved with hurdles but from these efforts has stemmed a multitude of original surface chemistries that scientists in the biological fields can draw from for their specific biological applications. The ability to easily modulate the chemical nature of qdot surfaces by employing one or more of the recently developed qdot coatings, together with their exceptional photophysics have been key elements for qdots to acquire a status of revolutionary fluorescent bio-probes. Indeed, the unique properties of qdots not only give biologists the opportunity to explore advanced imaging techniques such as single molecule or lifetime imaging but also to revisit traditional fluorescence imaging methodologies and extract yet unobserved or inaccessible information in vitro or in vivo.
机译:经过几组研究人员在表面化学开发和优化方面的大量努力后,荧光半导体纳米晶体探针(也称为量子点或量子点)现已进入生物学应用领域,为生物学家提供了很多东西。成功之路充满了障碍,但这些努力却阻止了生物领域的科学家可以将其用于特定生物学应用的众多原始表面化学方法。通过使用一种或多种最近开发的qdot涂层轻松地调节qdot表面化学性质的能力以及其出色的光物理特性,已成为qdot获得革命性荧光生物探针状态的关键要素。的确,qdots的独特特性不仅为生物学家提供了探索先进的成像技术(如单分子成像或终生成像)的机会,而且还使人们能够重新探寻传统的荧光成像方法,并在体外或体内提取尚未观察到或无法获得的信息。

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