State Key Laboratory of Modern Optical Instrumentations, Center for Optical and Electromagnetic Research, Zhejiang University, Hangzhou, 310058, China.
State Key Laboratory of Supramolecular Structure and Materials, Jilin University, Changchun, 130012, China.
Adv Healthc Mater. 2017 Nov;6(21). doi: 10.1002/adhm.201700685. Epub 2017 Aug 10.
Deep-tissue imaging is of great significance to biological applications. In this paper, a deep-red emissive luminogen 2,3-bis(4'-(diphenylamino)-[1,1'-biphenyl]-4-yl) fumaronitrile (TPATCN) with aggregation-induced emission (AIE) feature is prepared. TPATCN molecules were then encapsulated within a polymeric matrix of Pluronic F-127 to form nanoparticles (NPs). TPATCN NPs exhibit bright three-photon fluorescence (3PF) in deep-red region, together with high chemical stability, good photostability, and biocompatibility. They are further utilized for in vivo 3PF imaging of the brain vasculature of mice, under the excitation of a 1550 nm femtosecond laser. A vivid 3D reconstruction of the brain vasculature is then built with a penetration depth of 875 µm, which is the largest in ever reported 3PF imaging based on AIE NPs. After that, by collecting both of the 3PF and third-harmonic generation signals, multichannel nonlinear optical imaging of the brain blood vessels is further realized. These results will be helpful to study the structures and functions of the brain in the future.
深组织成像是生物应用中非常重要的。在本文中,我们制备了一种具有聚集诱导发射(AIE)特性的深红光发射体 2,3-双(4'-(二苯基氨基)-[1,1'-联苯]-4-基)马来腈(TPATCN)。然后,将 TPATCN 分子封装在 Pluronic F-127 的聚合物基质中形成纳米颗粒(NPs)。TPATCN NPs 在深红光区域表现出明亮的三光子荧光(3PF),同时具有高化学稳定性、良好的光稳定性和生物相容性。它们进一步用于在 1550nm 飞秒激光激发下对小鼠大脑血管进行体内 3PF 成像。然后,构建了一个具有 875 µm 穿透深度的生动的大脑血管 3D 重建,这是基于 AIE NPs 的 3PF 成像中报道的最大穿透深度。之后,通过收集 3PF 和三次谐波产生信号,进一步实现了大脑血管的多通道非线性光学成像。这些结果将有助于未来研究大脑的结构和功能。