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Transiently Responsive Block Copolymer Micelles Based on N-(2-Hydroxypropyl)methacrylamide Engineered with Hydrolyzable Ethylcarbonate Side Chains.
Kasmi, Sabah; Louage, Benoit; Nuhn, Lutz; Van Driessche, Alexandra; Van Deun, Jan; Karalic, Izet; Risseeuw, Martijn; Van Calenbergh, Serge; Hoogenboom, Richard; De Rycke, Riet; De Wever, Olivier; Hennink, Wim E; De Geest, Bruno G.
Afiliação
  • Kasmi S; Department of Pharmaceutics, Ghent University , 9000 Ghent, Belgium.
  • Louage B; Department of Pharmaceutics, Ghent University , 9000 Ghent, Belgium.
  • Nuhn L; Department of Pharmaceutics, Ghent University , 9000 Ghent, Belgium.
  • Van Driessche A; Department of Pharmaceutics, Ghent University , 9000 Ghent, Belgium.
  • Van Deun J; Laboratory of Experimental Cancer Research, Department of Radiation Oncology and Experimental Cancer Research, Ghent University Hospital , 9000 Ghent, Belgium.
  • Karalic I; Department of Pharmaceutics, Ghent University , 9000 Ghent, Belgium.
  • Risseeuw M; Department of Pharmaceutics, Ghent University , 9000 Ghent, Belgium.
  • Van Calenbergh S; Department of Pharmaceutics, Ghent University , 9000 Ghent, Belgium.
  • Hoogenboom R; Supramolecular Chemistry Group, Department of Organic and Macromolecular Chemistry, Ghent University , 9000 Ghent, Belgium.
  • De Rycke R; VIB inflammation Research Center , Zwijnaarde, 9052 Ghent, Belgium.
  • De Wever O; Laboratory of Experimental Cancer Research, Department of Radiation Oncology and Experimental Cancer Research, Ghent University Hospital , 9000 Ghent, Belgium.
  • Hennink WE; Department of Pharmaceutics, Utrecht Institute for Pharmaceutical Sciences, Utrecht University , 3512 JE Utrecht, The Netherlands.
  • De Geest BG; Department of Pharmaceutics, Ghent University , 9000 Ghent, Belgium.
Biomacromolecules ; 17(1): 119-27, 2016 Jan 11.
Article em En | MEDLINE | ID: mdl-26650350
The lack of selectivity and low solubility of many chemotherapeutics impels the development of different biocompatible nanosized drug carriers. Amphiphilic block copolymers, composed of a hydrophilic and hydrophobic domain, show great potential because of their small size, large solubilizing power and loading capacity. In this paper, we introduce a new class of degradable temperature-responsive block copolymers based on the modification of N-(2-hydroxypropyl)methacrylamide (HPMA) with an ethyl group via a hydrolytically sensitive carbonate ester, polymerized by radical polymerization using a PEG-based macroinitiatior. The micellization and temperature-responsive behavior of the PEG-poly(HPMA-EC) block copolymer were investigated by dynamic light scattering (DLS). We observed that the polymer exhibits lower critical solution temperature (LCST) behavior and that above the cloud point (cp) of 17 °C the block copolymer self-assembles in micelles with a diameter of 40 nm. Flow cytometry analysis and confocal microscopy show a dose-dependent cellular uptake of the micelles loaded with a hydrophobic dye. The block copolymer nanoparticles were capable of delivering the hydrophobic payload into cancer cells in both 2D and 3D in vitro cultures. The block copolymer has excellent cytocompatibility, whereas loading the particles with the hydrophobic anticancer drug paclitaxel results in a dose-dependent decrease in cell viability.
Assuntos

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Polímeros / Acrilamidas Limite: Animals / Humans Idioma: En Ano de publicação: 2016 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Polímeros / Acrilamidas Limite: Animals / Humans Idioma: En Ano de publicação: 2016 Tipo de documento: Article