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Structural and functional evaluation of oxygenating keratin/silk fibroin scaffold and initial assessment of their potential for urethral tissue engineering

机译:氧化角蛋白/丝素蛋白支架的结构和功能评估,及其对尿道组织工程潜力的初步评估

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摘要

In this study, we report a new type of oxygen-generating scaffold, composed of human keratin, silk, gelatin and calcium peroxide (CPO). After mixing the silk/keratin (60:40) with 2% gelatin and 20% CPO, the film demonstrated excellent mechanical properties, non-cytotoxicity and oxygen-generative ability. The detailed structure of scaffold was revealed by confocal laser and electronic scanning microscopy. The gelatin formed the network structure, which mixed with silk fibroin and keratin. The CPOs were embedded into scaffold. A shell core structure was formed in the CPO particles, in which the CPO was located in the core and the gelatin was mainly wrapped around the CPO. Furthermore, the oxygen release test showed that scaffold was able to steadily release high level of oxygen over two weeks in vitro. In addition, the anti-bacterial function was also proved in the scaffold. Films with CPO enhanced the repair in dog urethral defect models, resulting in patent urethra. Improved organized muscle bundles and epithelial layer were observed in animals treated with CPO films compared with those treated with non-CPO films. This study suggests that this biomaterial could be suitable for tissue engineered urinary tract reconstruction. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在这项研究中,我们报告了一种新型的氧气产生支架,它由人角蛋白,丝绸,明胶和过氧化钙(CPO)组成。将蚕丝/角蛋白(60:40)与2%的明胶和20%的CPO混合后,该膜表现出出色的机械性能,无细胞毒性和氧气生成能力。通过共聚焦激光和电子扫描显微镜揭示了支架的详细结构。明胶形成网络结构,并与丝素蛋白和角蛋白混合。将CPO嵌入支架中。在CPO颗粒中形成了壳核结构,其中CPO位于核中,明胶主要包裹在CPO周围。此外,氧气释放测试表明支架能够在两周内稳定释放高水平的氧气。另外,在支架中也证明了其抗菌功能。含CPO的胶片可增强狗尿道缺损模型的修复,从而导致尿道未闭。与未使用CPO膜治疗的动物相比,在使用CPO膜治疗的动物中观察到改善的有组织的肌肉束和上皮层。这项研究表明,这种生物材料可能适合组织工程尿路重建。 (C)2016 Elsevier Ltd.保留所有权利。

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