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用于体内成像和癌症治疗的近红外二区量子点

Near-Infrared-II Quantum Dots for In Vivo Imaging and Cancer Therapy.

作者信息

Chen Lu-Lu, Zhao Liang, Wang Zhi-Gang, Liu Shu-Lin, Pang Dai-Wen

机构信息

State Key Laboratory of Medicinal Chemical Biology, Tianjin Key Laboratory of Biosensing and Molecular Recognition, Research Center for Analytical Sciences, College of Chemistry and School of Medicine, Nankai University, Tianjin, 300071, P. R. China.

出版信息

Small. 2022 Feb;18(8):e2104567. doi: 10.1002/smll.202104567. Epub 2021 Nov 26.

Abstract

In vivo fluorescence imaging can perform real-time, noninvasive, and high spatiotemporal resolution imaging to accurately obtain the dynamic biological information in vivo, which plays significant roles in the early diagnosis and treatment of cancer. However, traditional in vivo fluorescence imaging usually operates in the visible and near-infrared (NIR)-I windows, which are severely interfered by the strong tissue absorption, tissue scattering, and autofluorescence. The emergence of NIR-II imaging at 1000-1700 nm significantly breaks through the imaging limitations in deep tissues, due to less tissue scattering and absorption. Benefiting from the outstanding optical properties of NIR-II quantum dots (QDs), such as high brightness and good photostability, in vivo fluorescence imaging exhibits excellent temporal-spatial resolution and large penetration depth, and QDs have become a kind of promising fluorescent biomarkers in the field of in vivo fluorescence imaging. Herein, the authors review NIR-II QDs from preparation to modification, and summarize recent applications of NIR-II QDs, including in vivo imaging and imaging-guided therapies. Finally, they discuss the special concerns when NIR-II QDs are shifted from in vivo imaging applications to further in-depth applications.

摘要

体内荧光成像能够进行实时、非侵入性且具有高时空分辨率的成像,以准确获取体内的动态生物学信息,这在癌症的早期诊断和治疗中发挥着重要作用。然而,传统的体内荧光成像通常在可见光和近红外(NIR)-I窗口中进行,这些窗口受到强烈的组织吸收、组织散射和自发荧光的严重干扰。1000-1700纳米的近红外-II成像的出现,由于较少的组织散射和吸收,显著突破了深层组织中的成像限制。受益于近红外-II量子点(QDs)出色的光学特性,如高亮度和良好的光稳定性,体内荧光成像展现出优异的时空分辨率和大穿透深度,并且量子点已成为体内荧光成像领域一种有前景的荧光生物标志物。在此,作者回顾了从制备到修饰的近红外-II量子点,并总结了近红外-II量子点的近期应用,包括体内成像和成像引导治疗。最后,他们讨论了近红外-II量子点从体内成像应用转向更深入应用时的特殊关注点。

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