4.7 Article

Synthesis of polyethylene glycol- and sulfobetaine-conjugated zwitterionic poly(L-lactide) and assay of its antifouling properties

Journal

COLLOIDS AND SURFACES B-BIOINTERFACES
Volume 102, Issue -, Pages 331-340

Publisher

ELSEVIER
DOI: 10.1016/j.colsurfb.2012.08.025

Keywords

Polyethylene glycol; Zwitterionic polyester; Poly(L-lactide); Click chemistry; Antifouling property

Funding

  1. National Natural Science Foundation of China [20975082, 21175107, 31100726]
  2. Ministry of Education of the People's Republic of China [NCET-08-0464]
  3. State Forestry Administration of the People's Republic of China [200904004]
  4. Scientific Research Foundation for the Returned Overseas Chinese Scholars of the State Education Ministry
  5. Northwest AF University

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A new antifouling polyester monomethoxy-poly(ethylene glycol)-b-poly(L-lactide)-b-poly(sulfobetaine methacrylate) (MPEG-PLA-PSBMA) was obtained by ring-opening polymerization of L-lactide, and subsequent click chemistry to graft the azide end-functionalized poly(sulfobetaine methacrylate) (polySBMA) moieties onto the alkyne end-functionalized MPEG-PLA (MPEG-PLA-alkyne). The chemical structure of the polymer was characterized using H-1 nuclear magnetic resonance and Fourier-transform infrared spectroscopy, and its physical properties (including molecular weight, glass transition temperature, and melting point) were determined using gel permeation chromatography and differential scanning calorimetry. To investigate its hydrophilicity and stability, as well as its antifouling properties, the polymer was also prepared as a surface coating on glass substrates. The wettability and stability of this polyester was examined by contact angle measurements. Furthermore, its antifouling properties were investigated via protein adsorption, cell adhesion studies, and bacterial attachment assays. The results suggest that the prepared zwitterionic polyester exhibits durable wettability and stability, as well as significant antifouling properties. The new zwitterionic polyester MPEG-PLA-PSBMA could be developed as a promising antifouling material with extensive biomedical applications. (c) 2012 Elsevier B.V. All rights reserved.

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