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Evaluation of Sterilization/Disinfection Methods of Fibrous Polyurethane Scaffolds Designed for Tissue Engineering Applications

机译:用于组织工程应用的纤维聚氨酯支架灭菌/消毒方法的评价

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摘要

Sterilization of a material carries the risk of unwanted changes in physical and chemical structure. The choice of method is a challenge—the process must be efficient, without significantly changing the properties of the material. In the presented studies, we analyzed the effect of selected sterilization/disinfection techniques on the properties of nanofibrous polyurethane biomaterial. Both radiation techniques (UV, gamma, e-beam) and 20 minutes’ contact with 70% EtOH were shown not to achieve 100% sterilization efficiency. The agar diffusion test showed higher sterilization efficiency when using an antimicrobial solution (AMS). At the same time, none of the analyzed techniques significantly altered the morphology and distribution of fiber diameters. EtOH and e-beam sterilization resulted in a significant reduction in material porosity together with an increase in the Young’s modulus. Similarly, AMS sterilization increased the value of Young’s modulus. In most cases, the viability of cells cultured in contact with the sterilized materials was not affected by the sterilization process. Only for UV sterilization, cell viability was significantly lower and reached about 70% of control after 72 h of culture.
机译:材料的灭菌带有物理和化学结构的不希望变化的风险。方法的选择是挑战 - 过程必须高效,而不会显着改变材料的性质。在本研究的研究中,我们分析了所选灭菌/消毒技术对纳米纤维聚氨酯生物材料性能的影响。辐射技术(UV,γ,电子束)和20分钟与70%EtOH接触,不达到100%灭菌效率。使用抗微生物溶液(AMS)时,琼脂扩散试验显示出更高的灭菌效率。同时,没有分析的技术显着改变了纤维直径的形态和分布。 ETOH和E-射线灭菌导致材料孔隙率显着降低,随着杨氏模量的增加而增加。同样,AMS灭菌增加了杨氏模量的价值。在大多数情况下,培养与灭菌材料接触的细胞的可行性不受灭菌过程的影响。仅针对紫外线灭菌,细胞活力显着降低,72小时后达到约70%的培养物。

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