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How complete are E-codes in commercial plan claims databases?

机译:商业计划索赔数据库中的电子代码是否完整?

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摘要

Poly-ε-caprolactone (PCL) is a biodegradable and biocompatible polymer used in tissue engineering for various clinical applications. Schwann cells (SCs) play an important role in nerve regeneration and repair. SCs attach and proliferate on PCL films but cellular responses are weak due to the hydrophobicity and neutrality of PCL. In this study, PCL films were hydrolysed and aminolysed to modify the surface with different functional groups and improve hydrophilicity. Hydrolysed films showed a significant increase in hydrophilicity while maintaining surface topography. A significant decrease in mechanical properties was also observed in the case of aminolysis. In vitro tests with Schwann cells (SCs) were performed to assess film biocompatibility. A short-time experiment showed improved cell attachment on modified films, in particular when amino groups were present on the material surface. Cell proliferation significantly increased when both treatments were performed, indicating that surface treatments are necessary for SC response. It was also demonstrated that cell morphology was influenced by physico-chemical surface properties. PCL can be used to make artificial conduits and chemical modification of the inner lumen improves biocompatibility.
机译:聚ε-己内酯(PCL)是一种可生物降解的生物相容性聚合物,用于组织工程中的各种临床应用。雪旺氏细胞(SCs)在神经再生和修复中起重要作用。 SC附着并增殖在PCL膜上,但是由于PCL的疏水性和中性,细胞反应较弱。在这项研究中,对PCL膜进行水解和氨基化处理,以修饰具有不同官能团的表面并提高亲水性。水解膜在保持表面形貌的同时,亲水性显着提高。在氨解的情况下,还观察到机械性能的显着降低。用雪旺氏细胞(SCs)进行体外测试以评估薄膜的生物相容性。短时实验显示,改进的膜上的细胞附着性得到改善,尤其是当材料表面存在氨基时。当两种处理都进行时,细胞增殖显着增加,表明表面处理对于SC反应是必需的。还证明了细胞形态受理化表面性质的影响。 PCL可用于制造人造导管,内腔的化学修饰可改善生物相容性。

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