半导体量子点荧光探针在体外和体内生物分子和细胞成像中的应用。

Sarwat B Rizvi, Shirin Ghaderi, Mo Keshtgar, Alexander M Seifalian
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引用次数: 135

摘要

多年来,生物成像取得了许多进步,使科学家们能够揭开围绕生物过程的许多谜团。理想的成像分辨率是纳米级,因为大多数生物过程都发生在这个尺度上。纳米技术使得功能化的纳米颗粒可以结合特定的目标,并在细胞和分子水平上追踪过程,从而使这成为可能。量子点(QDs)或半导体纳米晶体是有潜力成为下一代荧光团的发光粒子。本文综述了量子点的基本原理及其作为荧光探针在各种生物成像应用中的作用。本文还讨论了其潜在的临床应用和需要克服的局限性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Semiconductor quantum dots as fluorescent probes for in vitro and in vivo bio-molecular and cellular imaging.

Over the years, biological imaging has seen many advances, allowing scientists to unfold many of the mysteries surrounding biological processes. The ideal imaging resolution would be in nanometres, as most biological processes occur at this scale. Nanotechnology has made this possible with functionalised nanoparticles that can bind to specific targets and trace processes at the cellular and molecular level. Quantum dots (QDs) or semiconductor nanocrystals are luminescent particles that have the potential to be the next generation fluorophores. This paper is an overview of the basics of QDs and their role as fluorescent probes for various biological imaging applications. Their potential clinical applications and the limitations that need to be overcome have also been discussed.

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