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基于有机荧光染料的纳米材料:成像和传感应用的合理设计进展。

Organic Fluorescent Dye-based Nanomaterials: Advances in the Rational Design for Imaging and Sensing Applications.

机构信息

University of Nebraska Medical Center, Department of Pharmaceutical Sciences, Fred and Pamela Buffett Cancer Center, Omaha, NE, United States.

出版信息

Curr Med Chem. 2019;26(21):4042-4064. doi: 10.2174/0929867325666180226111716.

Abstract

Self-assembled fluorescent nanomaterials based on small-molecule organic dyes are gaining increasing popularity in imaging and sensing applications over the past decade. This is primarily due to their ability to combine spectral properties tunability and biocompatibility of small molecule organic fluorophores with brightness, chemical and colloidal stability of inorganic materials. Such a unique combination of features comes with rich versatility of dye-based nanomaterials: from aggregates of small molecules to sophisticated core-shell nanoarchitectures involving hyperbranched polymers. Along with the ongoing discovery of new materials and better ways of their synthesis, it is very important to continue systematic studies of fundamental factors that regulate the key properties of fluorescent nanomaterials: their size, polydispersity, colloidal stability, chemical stability, absorption and emission maxima, biocompatibility, and interactions with biological interfaces. In this review, we focus on the systematic description of various types of organic fluorescent nanomaterials, approaches to their synthesis, and ways to optimize and control their characteristics. The discussion is built on examples from reports on recent advances in the design and applications of such materials. Conclusions made from this analysis allow a perspective on future development of fluorescent nanomaterials design for biomedical and related applications.

摘要

基于小分子有机染料的自组装荧光纳米材料在过去十年中的成像和传感应用中越来越受到关注。这主要是由于它们能够将小分子有机荧光团的光谱性质可调性和生物相容性与无机材料的亮度、化学稳定性和胶体稳定性结合起来。这种独特的组合特点使基于染料的纳米材料具有丰富的多功能性:从小分子的聚集体到涉及超支化聚合物的复杂核壳纳米结构。随着新材料的不断发现和更好的合成方法,继续系统研究调控荧光纳米材料关键性质的基本因素非常重要:它们的尺寸、多分散性、胶体稳定性、化学稳定性、吸收和发射最大值、生物相容性以及与生物界面的相互作用。在这篇综述中,我们重点介绍了各种类型的有机荧光纳米材料的系统描述、它们的合成方法以及优化和控制其特性的方法。讨论的基础是关于此类材料设计和应用的最新进展报告中的实例。从这种分析中得出的结论使人们对生物医学和相关应用中荧光纳米材料设计的未来发展有了一个展望。

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