Preparation and Characterization of Polyion Complex Micelles with Phosphobetaine Shells

A pair of oppositely charged diblock copolymers, poly(2-(methacryloyloxy)ethyl phosphorylcholine)-block-poly((3-(methacryl­oylamino)propyl)trimethyl­ammonium chloride) (PMPC-b-PMAPTAC) and poly(2-(methacryl­oyloxy)ethyl phosphoryl­choline)-block-poly(sodium 2-(acrylamido)-2-methyl­propane­sulfonate)...

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Veröffentlicht in:Langmuir 2013-08, Vol.29 (31), p.9651-9661
Hauptverfasser: Nakai, Keita, Nishiuchi, Midori, Inoue, Masamichi, Ishihara, Kazuhiko, Sanada, Yusuke, Sakurai, Kazuo, Yusa, Shin-ichi
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Sprache:eng
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Zusammenfassung:A pair of oppositely charged diblock copolymers, poly(2-(methacryloyloxy)ethyl phosphorylcholine)-block-poly((3-(methacryl­oylamino)propyl)trimethyl­ammonium chloride) (PMPC-b-PMAPTAC) and poly(2-(methacryl­oyloxy)ethyl phosphoryl­choline)-block-poly(sodium 2-(acrylamido)-2-methyl­propane­sulfonate) (PMPC-b-PAMPS), was prepared via reversible addition–fragmentation chain transfer radical polymerization using a PMPC-based macro chain transfer agent. The pendant phosphorylcholine group in the hydrophilic PMPC block has anionic phosphate and cationic quaternary amino groups, which are neutralized within the pendant group. Therefore, the mixing of aqueous solutions of PMPC-b-PMAPTAC and PMPC-b-PAMPS leads to the spontaneous formation of simple core–shell spherical polyion complex (PIC) micelles comprising of a segregated PIC core and PMPC shells. The PIC micelles were characterized using 1H NMR spin–spin (T 2) and spin–lattice relaxation times (T 1), diffusion-ordered NMR spectroscopy, static light scattering, dynamic light scattering (DLS), and transmission electron microscopy techniques. The hydrodynamic size of the PIC micelle depended on the mixing ratio of PMPC-b-PMAPTAC and PMPC-b-PAMPS; the maximum size occurred at the mixing ratio yielding stoichiometric charge neutralization. The PIC micelles disintegrated to become unimers with the addition of salts.
ISSN:0743-7463
1520-5827
DOI:10.1021/la401063b