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基于有机微球-SiO2 核壳结构的细胞内近红外微激光探针用于细胞标记和示踪。

Intracellular near-Infrared Microlaser Probes Based on Organic Microsphere-SiO Core-Shell Structures for Cell Tagging and Tracking.

机构信息

Beijing Key Laboratory for Optical Materials and Photonic Devices, Department of Chemistry , Capital Normal University , Beijing 100048 , P. R. China.

Tianjin Key Laboratory of Molecular Optoelectronic Sciences Department of Chemistry, School of Sciences , Tianjin University Tianjin Collaborative Innovation Center of Chemical Science and Engineering , Tianjin 300072 , People's Republic of China.

出版信息

ACS Appl Mater Interfaces. 2018 Oct 3;10(39):32981-32987. doi: 10.1021/acsami.8b09380. Epub 2018 Sep 24.

Abstract

Conventional near-infrared (NIR) luminescent probes, such as DsRed and Cy5, utilize spontaneous emission (SE) signals, which are broad (fwhm >50 nm) and often have low quantum yield. Herein, we developed smart NIR intracellular whispering-gallery mode (WGM) microlaser probes made by organic microspheres of (E)-3-(4-(diptolylamino)phenyl)-1-(1-hydroxynaphthalen-2-yl)prop-2-en-1-one (DPHP) coated with a silica shell. The overall small diameter ( D, adjustable between 2 and 10 μm) and the biocompatible silica shell ensure our core-shell microspheres (CSmSPs) to be engulfed in cells as a microlaser operating around 720 nm with a low threshold of 0.78 μJ/cm. Considering that WGM mode spacing depending strongly on its size, it will be possible to distinguish millions of individual macrophages through well-defined WGM lasing peaks (fwhm ≤2 nm) of CSmSPs of different sizes. Furthermore, we monitored the transformation of normal macrophages to foamy ones by encoding them with our NIR CSmSPs microlaser probes, which deliver constant WGM lasing signals with a spectral fluctuation <0.02 nm and excellent stability.

摘要

传统的近红外(NIR)荧光探针,如 DsRed 和 Cy5,利用自发发射(SE)信号,其带宽较宽(fwhm >50nm),量子产率往往较低。在此,我们开发了由(E)-3-(4-(二芐基氨基)苯基)-1-(1-羟基萘-2-基)-2-烯-1-酮(DPHP)的有机微球涂覆二氧化硅壳制成的智能近红外细胞内 whispering-gallery 模式(WGM)微激光探针。整体小直径(D,可调至 2 至 10μm)和生物相容性的二氧化硅壳确保我们的核壳微球(CSmSPs)能够作为微激光在 720nm 左右工作,其阈值低至 0.78μJ/cm。考虑到 WGM 模式间隔强烈依赖于其尺寸,我们将有可能通过不同尺寸的 CSmSPs 的明确定义的 WGM 激光峰(fwhm ≤2nm)区分数百万个个体巨噬细胞。此外,我们通过用我们的近红外 CSmSPs 微激光探针对正常巨噬细胞进行编码,监测其向泡沫细胞的转化,这些探针提供具有<0.02nm 光谱波动和出色稳定性的恒定 WGM 激光信号。

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