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用于体内成像的通用且可扩展的亮、稳定、功能化聚集诱导发光荧光团胶体纳米晶体的方法。

General and Scalable Approach to Bright, Stable, and Functional AIE Fluorogen Colloidal Nanocrystals for in Vivo Imaging.

机构信息

Université de Lyon , F-69003 Lyon , France.

INSA-Lyon, IMP , F-69621 Villeurbanne , France.

出版信息

ACS Appl Mater Interfaces. 2018 Aug 1;10(30):25154-25165. doi: 10.1021/acsami.8b07859. Epub 2018 Jul 23.

Abstract

Fluorescent nanoparticles built from aggregation-induced emission-active organic molecules (AIE-FONs) have emerged as powerful tools in life science research for in vivo bioimaging of organs, biosensing, and therapy. However, the practical use of such biotracers has been hindered owing to the difficulty of designing bright nanoparticles with controlled dimensions (typically below 200 nm), narrow size dispersity and long shelf stability. In this article, we present a very simple yet effective approach to produce monodisperse sub-200 nm AIE fluorescent organic solid dispersions with excellent redispersibility and colloidal stability in aqueous medium by combination of nanoprecipitation and freeze-drying procedures. By selecting polymer additives that simultaneously act as stabilizers, promoters of amorphous-crystalline transition, and functionalization/cross-linking platforms, we demonstrate a straightforward access to stable nanocrystalline FONs that exhibit significantly higher brightness than their amorphous precursors and constitute efficient probes for in vivo imaging of the normal and tumor vasculature. FONs design principles reported here are universal, applicable to a range of fluorophores with different chemical structures and crystallization abilities, and are suitable for high-throughput production and manufacturing of functional imaging probes.

摘要

基于聚集诱导发光(AIE)活性有机分子构建的荧光纳米粒子已成为生命科学研究中用于器官体内生物成像、生物传感和治疗的有力工具。然而,由于设计具有可控尺寸(通常低于 200nm)、窄尺寸分散性和长货架稳定性的明亮纳米粒子具有一定难度,因此此类生物示踪剂的实际应用受到了限制。在本文中,我们提出了一种非常简单但有效的方法,通过纳米沉淀和冷冻干燥相结合的方法,在水介质中制备单分散的亚 200nm AIE 荧光有机固体分散体,其具有优异的再分散性和胶体稳定性。通过选择聚合物添加剂,这些添加剂同时作为稳定剂、无定形-结晶转变的促进剂以及功能化/交联平台,我们展示了一种简单的方法来制备稳定的纳米晶 FON,其亮度明显高于无定形前体,并且可以作为正常和肿瘤血管成像的有效探针。本文报道的 FON 设计原则具有普遍性,适用于具有不同化学结构和结晶能力的一系列荧光团,并且适合于功能成像探针的高通量生产和制造。

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