首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Adhesive protein interactions with chitosan: Consequences for valve endothelial cell growth on tissue-engineering materials
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Adhesive protein interactions with chitosan: Consequences for valve endothelial cell growth on tissue-engineering materials

机译:壳聚糖与黏附蛋白的相互作用:组织工程材料上瓣膜内皮细胞生长的后果

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Stable endothelialization of a tissue-engineered heart valve is essential for proper valve function, although adhesive characteristics of the native valve endothelial cell (VEC) have rarely been explored. This research evaluated VEC adhesive qualities and attempted to enhance VEC growth on the biopolymer chitosan, a novel tissue-engineering scaffold material with promising biological and chemical properties. Aortic VEC cultures were isolated and found to preferentially adhere to fibronectin, collagen types IV and I over laminin and osteopontin in a dose-dependent manner. Seeding of VEC onto comparison substrates revealed VEC growth and morphology to be preferential in the order: tissue culture polystyrene > gelatin, poly(DL-lactide-co-glycolide), chitosan> poly(hydroxy alkanoate). Adhesive protein precoating of chitosan did not significantly enhance VEC growth, despite equivalent protein adsorption as to polystyrene. Initial cell adhesion to protein-precoated chitosan, however, was higher than for polystyrene. Composite chitosan/collagen type TV films were investigated as an alternative to simple protein precoatings, and were shown to improve VEC growth and morphology over chitosan alone. These findings suggest potential manipulation of chitosan properties to improve amenability to valve tissue-engineering applications.
机译:组织工程心脏瓣膜的稳定内皮化对于正常的瓣膜功能至关重要,尽管很少研究天然瓣膜内皮细胞(VEC)的粘附特性。这项研究评估了VEC粘合剂的质量,并试图增强生物聚合物壳聚糖上的VEC生长,该聚合物是一种具有理想的生物学和化学特性的新型组织工程支架材料。分离出主动脉VEC培养物,并发现其与纤连蛋白,IV型和I型胶原蛋白优先结合层粘连蛋白和骨桥蛋白,且呈剂量依赖性。将VEC播种到比较基质上显示VEC的生长和形态依次优先:组织培养聚苯乙烯>明胶,聚(DL-丙交酯-乙交酯),壳聚糖>聚(羟基链烷酸酯)。尽管与聚苯乙烯具有相同的蛋白质吸附能力,但壳聚糖的粘合剂蛋白质预涂层并未显着增强VEC的生长。然而,最初的细胞对蛋白包被的壳聚糖的粘附力高于聚苯乙烯。研究了壳聚糖/胶原蛋白复合电视薄膜作为简单蛋白质预涂层的替代方法,并显示与单独的壳聚糖相比,VEC的生长和形态有所改善。这些发现暗示了壳聚糖性能的潜在操纵,以改善对瓣膜组织工程应用的适应性。

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