Center for Tissue and Cell Sciences, Seattle Children's Research Institute, Seattle, WA 98101, USA.
Biomaterials. 2011 Jan;32(3):797-807. doi: 10.1016/j.biomaterials.2010.09.050. Epub 2010 Oct 28.
Cell-seeded synthetic polymer scaffolds constitute an emerging technology for urethroplastic applications. The study goal was to identify urethral proteins appropriate for cell attachment and optimize their adsorption onto two types of scaffolds: porous poly(ester urethane) with a poly(caprolactone) soft segment (PEU-PCL) and poly-(96% L/4% D)-lactic acid (P96L/4DLA). Specimens from eight men undergoing urethral reconstruction for stricture diseases were subjected to immunohistochemical analysis. Type I collagen, type IV collagen and vitronectin were detected at the interface between the epithelium and its basement membrane. Electrophoresis confirmed that polypeptide chains in the starting material were also present in fractions eluted from adsorbed scaffolds. Over a 4 week incubation assay, only vitronectin exhibited 100% retention levels for all scaffolds. The saturation point for each protein on each scaffold type was determined by titration and ELISA. The collective evidence indicates the concept that vitronectin > type IV collagen > type I collagen are preferred adsorption proteins for PEU-PCL and P96L/4DLA.
细胞接种合成聚合物支架是一种新兴的尿道成形术应用技术。本研究的目的是确定适合细胞附着的尿道蛋白,并优化其在两种支架上的吸附:具有聚己内酯软段的多孔聚酯氨酯(PEU-PCL)和聚(96% L/4% D)-乳酸(P96L/4DLA)。对 8 名因狭窄性疾病而接受尿道重建的男性患者的标本进行免疫组织化学分析。在上皮及其基底膜之间的界面处检测到 I 型胶原、IV 型胶原和纤连蛋白。电泳证实起始材料中的多肽链也存在于从吸附支架洗脱的部分中。在 4 周孵育试验中,只有纤连蛋白在所有支架上都表现出 100%的保留水平。通过滴定和 ELISA 确定了每种蛋白质在每种支架类型上的饱和点。综合证据表明,纤连蛋白>IV 型胶原>I 型胶原是 PEU-PCL 和 P96L/4DLA 更优选的吸附蛋白。