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用于体内生物成像的激发波长为1710 nm的近红外二区反斯托克斯发光纳米晶体

NIR-II Anti-Stokes Luminescence Nanocrystals with 1710 nm Excitation for in vivo Bioimaging.

作者信息

Chen Zi-Han, Yun Baofeng, Hou Yanran, Wang Xiaohan, Wang Xusheng, Xu Jing, Jiang Li, Han Ting, Zhang Hongxin, Zhang Fan

机构信息

Department of Chemistry, Laboratory of Advanced Materials, State Key Laboratory of Molecular Engineering of Polymers, Shanghai Key Laboratory of Molecular Catalysis and Innovative Materials, Fudan University, Shanghai, 200433, China.

出版信息

Angew Chem Int Ed Engl. 2025 Jan 21;64(4):e202416893. doi: 10.1002/anie.202416893. Epub 2024 Nov 11.

Abstract

Anti-Stokes luminescence (ASL) based on lanthanide nanocrystals holds immense promise for in vivo optical imaging and bio-detection, which benefits from filtered autofluorescence. However, the current longest emission and excitation wavelengths of lanthanide ASL system were shorter than 1200 nm and 1532 nm, respectively, which limited tissue penetration depth and caused low signal-to-noise ratio (SNR) of in vivo imaging due to tissue scattering and water absorption. In this work, we extended the excitation wavelength to 1710 nm with the second near-infrared (NIR-II, 1000-1700 nm) emission up to 1650 nm through a novel ASL nanocrystal LiYF : 10 %Tm@LiYF : 70 %Er@LiYF. Compared with 1532 nm excited ASL nanoprobes, the 1710 nm excited nanocrystals could improve in vivo imaging SNR by 12.72 folds. Based on this excellent imaging performance of the proposed ASL nanoprobes, three-channel in vivo dynamic multiplexed imaging was achieved, which quantitatively revealed metabolic rates of intestinal dynamics and liver enrichment under anesthetized and awake states. This innovative ASL nanoprobes and dynamic multiplexed imaging technology would be conducive to optimizing dosing regimen and treatment plans across various physiological conditions.

摘要

基于镧系纳米晶体的反斯托克斯发光(ASL)在体内光学成像和生物检测方面具有巨大潜力,这得益于对自发荧光的过滤。然而,目前镧系ASL系统的最长发射波长和激发波长分别短于1200 nm和1532 nm,这限制了组织穿透深度,并由于组织散射和水吸收导致体内成像的信噪比(SNR)较低。在这项工作中,我们通过一种新型的ASL纳米晶体LiYF : 10 %Tm@LiYF : 70 %Er@LiYF将激发波长扩展到1710 nm,其二次近红外(NIR-II,1000 - 1700 nm)发射高达1650 nm。与1532 nm激发的ASL纳米探针相比,1710 nm激发的纳米晶体可将体内成像的SNR提高12.72倍。基于所提出的ASL纳米探针的这种出色成像性能,实现了三通道体内动态多重成像,定量揭示了麻醉和清醒状态下肠道动力学的代谢率以及肝脏富集情况。这种创新的ASL纳米探针和动态多重成像技术将有助于在各种生理条件下优化给药方案和治疗计划。

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