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水溶性硅纳米晶作为近红外发光探针用于时间门控生物医学成像。

Water-soluble silicon nanocrystals as NIR luminescent probes for time-gated biomedical imaging.

机构信息

Department of Chemistry "Giacomo Ciamician", University of Bologna, Via Selmi 2, 40126 Bologna, Italy.

出版信息

Nanoscale. 2020 Apr 14;12(14):7921-7926. doi: 10.1039/d0nr00814a. Epub 2020 Mar 31.

Abstract

Luminescent probes based on silicon nanocrystals (SiNCs) have many advantages for bioimaging compared to more conventional quantum dots: abundancy of silicon combined with its biocompatibility; tunability of the emission color of SiNCs in the red and NIR spectral region to gain deeper tissue penetration; long emission lifetimes of SiNCs (hundreds of μs) enabling time-gated acquisitions to avoid background noise caused by tissue autofluorescence and scattered excitation light. Here we report a new three-step synthesis, based on a low temperature thiol-ene click reaction that can afford SiNCs, colloidally stable in water, with preserved bright red and NIR photoluminescence (band maxima at 735 and 945 nm for nanocrystals with diameters of 4 and 5 nm, respectively) and long emission lifetimes. Their luminescence is insensitive to dioxygen and sensitive to pH changes in the physiological range, enabling pH sensing. In vivo studies demonstrated tumor accumulation, 48 hours clearance and a 3-fold improvement of the signal-to-noise ratio compared to steady-state imaging.

摘要

基于硅纳米晶体 (SiNCs) 的荧光探针在生物成像方面比更传统的量子点有许多优势:硅的丰富性与其生物相容性相结合;SiNCs 在红色和近红外光谱区域的发射颜色可调谐,以获得更深的组织穿透性;SiNCs 的长发射寿命(数百微秒)可实现时间门控采集,以避免由组织自发荧光和散射激发光引起的背景噪声。在这里,我们报告了一种新的三步合成方法,基于低温硫醇-烯点击反应,可以得到在水中胶体稳定的 SiNCs,保留明亮的红色和近红外光致发光(直径为 4nm 和 5nm 的纳米晶体的最大带宽分别为 735nm 和 945nm)和长发射寿命。它们的发光对氧气不敏感,对生理范围内的 pH 值变化敏感,能够进行 pH 感测。体内研究表明,与稳态成像相比,肿瘤积累增加了 48 小时,信噪比提高了 3 倍。

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