Full Paper
Synthesis of Thermo- and pH-Sensitive Polyion Complex Micelles for Fluorescent Imaging
Article first published online: 16 JAN 2012
DOI: 10.1002/chem.201102704
Copyright © 2012 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim
Additional Information
How to Cite
Liu, Y., Li, C., Wang, H.-Y., Zhang, X.-Z. and Zhuo, R.-X. (2012), Synthesis of Thermo- and pH-Sensitive Polyion Complex Micelles for Fluorescent Imaging. Chem. Eur. J., 18: 2297–2304. doi: 10.1002/chem.201102704
Publication History
- Issue published online: 10 FEB 2012
- Article first published online: 16 JAN 2012
- Manuscript Received: 30 AUG 2011
Funded by
- Ministry of Science and Technology of China. Grant Numbers: 2011CB606202, 2009CB930300
Keywords:
- copolymerization;
- fluorescent probes;
- micelles;
- peptides;
- polyions
Abstract
Two thermo- and pH-sensitive polypeptide-based copolymers, poly(N-isopropylacrylamide-co-N-hydroxymethylacrylamide)-b-poly(L-lysine) (P(NIPAAm-co-HMAAm)-b-PLL, P1) and poly(N-isopropylacrylamide-co-N-hydroxymethylacrylamide)-b-poly(glutamic acid) (P(NIPAAm-co-HMAAm)-b-PGA, P2), have been designed and synthesized by the ring-opening anionic polymerization of N-carboxyanhydrides (NCA) with amino-terminated P(NIPAAm-co-HMAAm). It was found that the block copolymers exhibit good biocompatibility and low toxicity. As a result of electrostatic interactions between the positively charged PLL and negatively charged PGA, P1 and P2 formed polyion complex (PIC) micelles consisting of polyelectrolyte complex cores and P(NIPAAm-co-HMAAm) shells in aqueous solution. The thermo- and pH-sensitivity of the PIC micelles were studied by UV/Vis spectrophotometry, dynamic light scattering (DLS), and transmission electron microscopy (TEM). Moreover, fluorescent PIC micelles were achieved by introducing two fluorescent molecules with different colors. Photographs and confocal laser scanning microscopy (CLSM) showed that the fluorescence-labeled PIC micelles exhibit thermo- and pH-dependent fluorescence, which may find wide applications in bioimaging in complicated microenvironments.

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