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工程化具有不同发射波长和特定荧光寿命的量子点用于细胞的光谱和时间多路复用成像。

Engineering Quantum Dots with Different Emission Wavelengths and Specific Fluorescence Lifetimes for Spectrally and Temporally Multiplexed Imaging of Cells.

作者信息

Zhang Butian, Yang Chengbin, Gao Yuan, Wang Yue, Bu Chengfei, Hu Siyi, Liu Liwei, Demir Hilmi Volkan, Qu Junle, Yong Ken-Tye

机构信息

School of Electrical and Electronic Engineering, Nanyang Technological University, 639798, Singapore.

Changchun University of Science and Technology, Changchun, 130022, P. R. China.

出版信息

Nanotheranostics. 2017 Mar 3;1(1):131-140. doi: 10.7150/ntno.18989. eCollection 2017.

Abstract

In this work, a proof-of-concept study was performed to examine the potential of spectrally and temporally multiplexed imaging of cells by using quantum dots (QDs). The CdSe and ZAIS QDs with different emission wavelengths and well-separated fluorescence lifetimes were prepared to provide 2-dimensional information. After incubation with cells, the same type of QDs with different emission wavelengths were distinguishable in spectral imaging while different types of QDs with similar emission wavelengths but well-separated fluorescence lifetimes were resolvable in fluorescence lifetime imaging. For cells co-stained with dye and different types of QDs, the fluorescence lifetime imaging microscopy (FLIM) images showed spatially separated patterns that can be split into channel images by using the software-based time gates. Overall, the results demonstrate the feasibility of combining the 2-dimensional encoded QDs for spectrally and temporally multiplexed imaging. This method can be extended to other QDs and organic dyes to maximize the number of measurable species in multiplexed imaging and sensing applications.

摘要

在本研究中,开展了一项概念验证研究,以检验使用量子点(QD)对细胞进行光谱和时间复用成像的潜力。制备了具有不同发射波长和明显不同荧光寿命的CdSe和ZAIS量子点,以提供二维信息。与细胞孵育后,具有不同发射波长的同一类型量子点在光谱成像中可区分,而具有相似发射波长但荧光寿命明显不同的不同类型量子点在荧光寿命成像中可分辨。对于用染料和不同类型量子点共染色的细胞,荧光寿命成像显微镜(FLIM)图像显示出空间分离的模式,可通过基于软件的时间门控将其拆分为通道图像。总体而言,结果证明了组合二维编码量子点用于光谱和时间复用成像的可行性。该方法可扩展到其他量子点和有机染料,以在复用成像和传感应用中最大化可测量物种的数量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/114c/5646722/ac3926e62e84/ntnov01p0131g001.jpg

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