Key Laboratory of Analytical Chemistry for Biology and Medicine (Ministry of Education), College of Chemistry and Molecular Sciences, State Key Laboratory of Virology, The Institute for Advanced Studies, and Wuhan Institute of Biotechnology, Wuhan University, Wuhan, 430072, P. R. China.
Chem Soc Rev. 2016 Mar 7;45(5):1211-24. doi: 10.1039/c5cs00657k.
Single-virus tracking (SVT) technique, which uses microscopy to monitor the behaviors of viruses, is a vital tool to study the real-time and in situ infection dynamics and virus-related interactions in live cells. To make SVT a more versatile tool in biological research, the researchers have developed a quantum dot (QD)-based SVT technique, which can be utilized for long-term and highly sensitive tracking in live cells. In this review, we describe the development of a QD-based SVT technique and its biological applications. We first discuss the advantage of QDs as tags in the SVT field by comparing the conventional tags, and then focus on the implementation of QD-based SVT experiments, including the QD labeling strategy, instrumentation, and image analysis method. Next, we elaborate the recent advances of QD-based SVT in the biological field, and mainly emphasize the representative examples to show how to use this technique to acquire more meaningful biological information.
单病毒追踪 (SVT) 技术是一种利用显微镜监测病毒行为的重要工具,可用于研究活细胞内实时和原位感染动力学以及与病毒相关的相互作用。为了使 SVT 成为生物学研究中更通用的工具,研究人员开发了一种基于量子点 (QD) 的 SVT 技术,可用于活细胞内的长期和高灵敏度追踪。在这篇综述中,我们描述了基于 QD 的 SVT 技术的发展及其生物学应用。我们首先通过比较传统标记物来讨论 QD 在 SVT 领域作为标记物的优势,然后重点介绍基于 QD 的 SVT 实验的实施,包括 QD 标记策略、仪器和图像分析方法。接下来,我们详细阐述了基于 QD 的 SVT 在生物学领域的最新进展,并主要强调了代表性示例,以展示如何使用该技术获取更有意义的生物学信息。