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首页> 外文期刊>Analytical Letters >Evaluation of a Gelatin-Modified Poly(epsilon-Caprolactone) Film as a Scaffold for Lung Disease
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Evaluation of a Gelatin-Modified Poly(epsilon-Caprolactone) Film as a Scaffold for Lung Disease

机译:将明胶改性的聚(ε-己内酮)膜评价为肺病的支架

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Lung transplantation is a necessary step for the patients with the end stage of chronic obstructive pulmonary disease. The use of artificial lungs is a promising alternative to natural lung transplantation which is complicated and is restricted by low organ donations. For successful lung engineering, it is important to choose the correct combination of specific biological cells and a synthetic carrier polymer. The focus of this study was to investigate the interactions of human lung epithelial cell line NCl-H292 that is involved in lung tissue development with the biodegradable poly(epsilon-caprolactone) before and after its chemical modification to evaluate potential for use in artificial lung formation. Also, the effect of polymer chemical modification on its mechanical and surface properties has been investigated. The poly(epsilon-caprolactone) surface was modified using aminolysis followed by immobilization of gelatin. The unmodified and modified polymer surfaces were characterized for roughness, tensile strength, and NCl-H292 metabolic cell activity. The results showed for the first time the possibility for NCI-H292 cells to adhere on this polymeric material. The resazurin assay showed that the metabolic activity at 24h postseeding of 80% in the presence of the unmodified and greater than 100% in the presence of the modified polymer was observed. The roughness of the poly(epsilon-caprolactone) increased from 4 to 26nm and the film strength increased from 0.01 to 0.045 kN when the material was chemically modified. The results obtained to date show potential for using modified poly(epsilon-caprolactone) as a scaffold for lung tissue engineering.
机译:肺移植是慢性阻塞性肺病终阶段的患者的必要步骤。人工肺的使用是对天然肺移植的有前途的替代方案,这是复杂的,并且受到低器官捐赠的限制。对于成功的肺工程,重要的是选择特定生物细胞和合成载体聚合物的正确组合。本研究的重点是研究人肺上皮细胞系NCL-H292与其化学修饰之前和之后的肺组织发育中参与肺组织发育的相互作用,以评估人工肺形成的潜力。而且,研究了聚合物化学改性对其机械和表面性质的影响。使用氨基解随后固定明胶进行修饰聚(ε-己内酯)表面。未修饰和改性的聚合物表面的特征在于粗糙度,拉伸强度和NCL-H292代谢细胞活性。结果表明,第一次对NCI-H292细胞粘附在该聚合物材料上的可能性。转基质测定显示,观察到在未改性和大于100%的情况下24h后24h后24小时后的代谢活性在发生改性聚合物的情况下。聚(ε-己内酯)的粗糙度从4至26nm增加,当化学改性材料时,膜强度从0.01至0.045kN增加。迄今为止的结果显示使用改性聚(ε-己内酯)作为肺组织工程支架的潜力。

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