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基于聚集诱导发光体和近红外染料的荧光共振能量转移(FRET)纳米粒子,具有增强的三光子近红外发射,用于体内脑血管造影。

Fluorescence resonance energy transfer (FRET) based nanoparticles composed of AIE luminogens and NIR dyes with enhanced three-photon near-infrared emission for in vivo brain angiography.

机构信息

State Key Laboratory of Modern Optical Instrumentations, Centre for Optical and Electromagnetic Research, Zhejiang University, Hangzhou 310058, China.

出版信息

Nanoscale. 2018 May 31;10(21):10025-10032. doi: 10.1039/c8nr00066b.

Abstract

Near-infrared (NIR) fluorescence is very important for high-contrast biological imaging of high-scattering tissues such as brain tissue. Unfortunately, commercial NIR dyes are excited usually by visible light, and their multi-photon absorption (MPA) cross-sections are small. Here, we design new co-encapsulated NIR nanoparticles (NPs) with a large three-photon (3PA) absorption cross-section. A form of aggregation-induced emission (AIE) luminogen (AIEgen), 2,3-bis(4'-(diphenylamino)-[1,1'-biphenyl]-4-yl) fumaronitrile (TPATCN), is introduced as the donor, and a form of NIR dye, silicon 2,3-naphthalocyanine bis-(trihexylsilyloxide) (NIR775), is adopted as the acceptor. Under the excitation of a 1550 nm fs laser, TPATCN-NIR775 NPs demonstrated a bright three-photon fluorescence centered at 785 nm. The energy transfer efficiency of the TPATCN-NIR775 NPs was calculated to be as high as 90%, which could be attributed to the good spectral overlap between the emission of TPATCN and the absorption of NIR775. By injection with TPATCN-NIR775 NPs, a vivid 3D reconstruction of mouse brain vasculature was obtained with even small blood vessels clearly visualized. The design strategy used for the co-encapsulated AIE-NIR NPs would be helpful in synthesizing more NIR probes for deep-tissue biological imaging in the future.

摘要

近红外 (NIR) 荧光在高散射组织(如脑组织)的高对比度生物成像中非常重要。不幸的是,商业 NIR 染料通常被可见光激发,其多光子吸收 (MPA) 截面较小。在这里,我们设计了具有大的三光子 (3PA) 吸收截面的新型共包封 NIR 纳米粒子 (NPs)。一种聚集诱导发射 (AIE) 发光团 (AIEgen),2,3-双(4'-(二苯基氨基)-[1,1'-联苯]-4-基)马来腈 (TPATCN),被引入作为供体,一种 NIR 染料,硅 2,3-萘酞菁双-(三己基硅氧烷) (NIR775),被采用作为受体。在 1550nmfs 激光激发下,TPATCN-NIR775 NPs 表现出明亮的三光子荧光,中心位于 785nm。TPATCN-NIR775 NPs 的能量转移效率高达 90%,这归因于 TPATCN 的发射与 NIR775 的吸收之间的良好光谱重叠。通过注射 TPATCN-NIR775 NPs,成功获得了小鼠大脑血管的生动 3D 重建,甚至可以清晰地观察到细小的血管。共包封 AIE-NIR NPs 所采用的设计策略将有助于未来合成更多用于深层组织生物成像的 NIR 探针。

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