4.7 Article

Ultrasonic-assisted Kabachnik-Fields reaction for rapid fabrication of AIE-active fluorescent organic nanoparticles

期刊

ULTRASONICS SONOCHEMISTRY
卷 35, 期 -, 页码 319-325

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.ultsonch.2016.10.008

关键词

Kabachnik-Fields reaction; Aggregation-induced emission; Fluorescent organic nanoparticles; Ultrasonic-assisted chemistry; Biomedical applications

资金

  1. National Science Foundation of China [21134004, 21201108, 51363016, 21474057]
  2. Natural Science Foundation of Jiangxi Province in China [20161BAB203072, 20161BAB213066]
  3. National 973 Project [2011CB935700]

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Aggregation-induced emission (AIE)-active fluorescent organic nanoparticles (FNPs) have been extensively explored for fluorescence turn-on bio-imaging applications with the unique advantages over conventional FNPs. Transformation of AIE-active molecules into FNPs can greatly expand their biomedical application potential. Here we reported a novel one-pot strategy for fabricating AIE-active FNPs through an ultrasonic-assisted, catalysts-free and solvent-free Kabachnik-Fields (KF) reaction for the first time. The KF reaction can be completed within 10 min to generate AIE-active PTH-CHO-PEI-DEP FNPs through mixing polyethylenimine and aldehyde group containing AIE dyes and diethyl phosphate. These PTH-CHO-PEI-DEP FNPs were confirmed by proton nuclear magnetic resonance (H-1 NMR) spectroscopy, transmission electron microscopy (TEM) and fluorescence spectroscopy etc. The cell uptake behavior as well as cell viability of PTH-CHO-PEI-DEP FNPs was examined to evaluate their potential for biomedical application. We demonstrated that the amphiphilic alpha-aminophosphonate polymers could self-assemble into PTH-CHO-PEI-DEP FNPs in aqueous solution and showed excellent water dispersibility. TEM image shows the size of PTH-CHO-PEI-DEP FNPs is 100-200 nm. More importantly, the PTH-CHO-PEI-DEP FNPs emit strong green fluorescence and desirable biocompatibility, making them very suitable for biomedical applications. Finally, thus smart FNPs design together with their excellent performance will open a new avenue in the development of FNPs for following biological processes such as carcinogenesis. (C) 2016 Elsevier B.V. All rights reserved.

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