Institute of Life and Health Engineering, Jinan University, Guangzhou, People's Republic of China.
Biomed Mater. 2011 Apr;6(2):025007. doi: 10.1088/1748-6041/6/2/025007. Epub 2011 Feb 28.
Collagen was chemically immobilized on poly(3-hydroxybutyrate-co-3-hydroxyvalerate) (PHBV) films via hydrophilic polyacrylamide spacers, aiming to establish the bioactive surface and the inner surface models. The inner surface modified films presented higher wettability than the surface modified films. Wide-angle x-ray diffraction results showed that the d-spacing values of the inner surface model increased compared with those of the surface model, but there was no significant difference between the amide- and collagen-modified PHBV films. The peak melting temperatures of PHBV and the special endotherm around 70 °C were following the order: PHBV > amide-modified PHBV > collagen-modified PHBV. The weight loss of the collagen-modified PHBV (inner surface model) might involve hydrolyzation and mineralization during 360 days of incubation, with a maximum value of 18.24%, while PHBV films did not show significant weight loss. The pH value of the degradation fluids fluctuated in the range of 6.86-7.22, as the initial pH was recorded at 7.20. Based on the surface model, collagen-modified PHBV scaffolds were prepared, which enhanced chondrocyte adhesion and spread on the biomimetic surface. Two surface modification models might develop a protocol with a view to generating a biocompatible and biomechanical scaffold for use in meniscus regeneration.
胶原蛋白通过亲水性聚丙烯酰胺间隔物化学固定在聚(3-羟基丁酸酯-共-3-羟基戊酸酯)(PHBV)薄膜上,旨在建立生物活性表面和内表面模型。与表面改性膜相比,内表面改性膜具有更高的润湿性。广角 X 射线衍射结果表明,与表面模型相比,内表面模型的 d 间距值增加,但酰胺和胶原蛋白改性 PHBV 薄膜之间没有显著差异。PHBV 的峰值熔融温度和 70°C 左右的特殊吸热峰遵循以下顺序:PHBV>酰胺改性 PHBV>胶原蛋白改性 PHBV。胶原蛋白改性 PHBV(内表面模型)在 360 天孵育期间的失重可能涉及水解和矿化,最大失重值为 18.24%,而 PHBV 薄膜没有明显的失重。降解液的 pH 值在 6.86-7.22 范围内波动,因为初始 pH 值记录为 7.20。基于表面模型,制备了胶原蛋白改性 PHBV 支架,该支架增强了仿生表面上软骨细胞的黏附和铺展。两种表面改性模型可能会制定一个方案,旨在生成用于半月板再生的生物相容性和生物力学支架。