Sterically blocking adhesion of cells to biological surfaces with a surface‐active copolymer containing poly(ethylene glycol) and phenylboronic acid

乙二醇 PEG比率 共聚物 高分子化学 苯硼酸 粘附 蛋白质吸附 聚合物 材料科学 细胞粘附 生物物理学 化学 有机化学 财务 催化作用 生物 经济
作者
Natalie D. Winblade,Hugo Schmökel,M. Baumann,Allan S. Hoffman,Jeffrey A. Hubbell
出处
期刊:Journal of Biomedical Materials Research [Wiley]
卷期号:59 (4): 618-631 被引量:49
标识
DOI:10.1002/jbm.1273
摘要

Abstract Graft copolymers were designed that could spontaneously bind to biological surfaces and block subsequent recognition and adhesion at those surfaces. Phenylboronic acid (PBA) moieties in the polymer backbone provided binding to surfaces, forming reversible covalent complexes with cis ‐diols found in many biological molecules. Pendant poly(ethylene glycol) (PEG) side chains sterically protected those surfaces from subsequent interactions with other proteins and cells. The PEG and PBA grafting ratios on these poly‐ L ‐lysine‐ graft ‐(PEG;PBA) copolymers [PLL‐ g ‐(PEG;PBA)] were varied, and the polymers were tested in models relevant to undesirable wound‐healing responses such as peritoneal adhesion formation and posterior capsule opacification. PLL‐ g ‐(PEG;PBA) polymers spontaneously coated tissue culture polystyrene and completely blocked rabbit lens epithelial cell adhesion to the surface over a wide range of PEG grafting ratios. PLL‐ g ‐(PEG;PBA)s with optimal grafting ratios were able to coat adsorbed serum proteins or extracellular matrices and block cell spreading on the surfaces at 4 h, although the effect was lost within 24 h. The polymer also enhanced the efficacy of surgical lysis of peritoneal adhesions in rats. The reversible covalent complexes formed by the PBA moieties on the copolymer backbone were more effective at binding biological surfaces than electrostatic interactions formed via a copolymer lacking the PBA moieties, that is, PLL‐ g ‐PEG. © 2001 Wiley Periodicals, Inc. J Biomed Mater Res 59: 618–631, 2002
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