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用于分析检测和近红外二区荧光成像的半导体聚合物点的最新进展。

Recent Developments in Semiconducting Polymer Dots for Analytical Detection and NIR-II Fluorescence Imaging.

机构信息

Department of Materials Science and Engineering, Indian Institute of Technology Delhi, New Delhi 110016, India.

Department of Applied Chemistry, National Chiao Tung University, Hsinchu 30010, Taiwan.

出版信息

ACS Appl Bio Mater. 2021 Mar 15;4(3):2142-2159. doi: 10.1021/acsabm.0c01185. Epub 2020 Nov 19.

Abstract

In recent years, semiconducting polymer dots (Pdots) have attracted enormous attention in applications from fundamental analytical detection to advanced deep-tissue bioimaging due to their ultrahigh fluorescence brightness with excellent photostability and minimal cytotoxicity. Pdots have therefore been widely adopted for a variety types of molecular sensing for analytical detection. More importantly, the recent development of Pdots for use in the optical window between 1000 and 1700 nm, popularly known as the "second near-infrared window" (NIR-II), has emerged as a class of optical transparent imaging technology in the living body. The advantages of the NIR-II region over the traditional NIR-I (700-900 nm) window in fluorescence imaging originate from the reduced autofluorescence, minimal absorption and scattering of light, and improved penetration depths to yield high spatiotemporal images for biological tissues. Herein, we discuss and summarize the recent developments of Pdots employed for analytical detection and NIR-II fluorescence imaging. Starting with their preparation, the recent developments for targeting various analytes are then highlighted. After that, the importance of and latest progress in NIR-II fluorescence imaging using Pdots are reported. Finally, perspectives and challenges associated with the emergence of Pdots in different fields are given.

摘要

近年来,由于具有超高的荧光亮度、优异的光稳定性和极小的细胞毒性,半导体聚合物点(Pdots)在从基础分析检测到先进的深层组织生物成像的应用中引起了极大的关注。因此,Pdots 已被广泛应用于各种类型的分子传感分析检测。更重要的是,Pdots 在光学窗口 1000 到 1700nm 之间的应用,即俗称的“第二近红外窗口”(NIR-II)的最新发展,已经成为一种在活体中光学透明成像技术。与传统的近红外一区(700-900nm)荧光成像相比,NIR-II 区具有减少自发荧光、最小化光吸收和散射以及提高穿透深度的优势,从而产生高时空分辨率的生物组织图像。在此,我们讨论和总结了用于分析检测和近红外二区荧光成像的 Pdots 的最新进展。首先介绍了它们的制备,然后重点介绍了针对各种分析物的最新发展。之后,报告了使用 Pdots 进行近红外二区荧光成像的重要性和最新进展。最后,给出了 Pdots 在不同领域出现的相关观点和挑战。

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