首页> 美国卫生研究院文献>Journal of Functional Biomaterials >Surface Properties of a Biocompatible Thermoplastic Polyurethane and Its Anti-Adhesive Effect against E. coli and S. aureus
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Surface Properties of a Biocompatible Thermoplastic Polyurethane and Its Anti-Adhesive Effect against E. coli and S. aureus

机译:生物相容性热塑性聚氨酯的表面特性及其对大肠杆菌和金黄色葡萄球菌的抗粘附作用

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摘要

Thermoplastic polyurethane (TPU) is a polymer used in a variety of fields, including medical applications. Here, we aimed to verify if the brush and bar coater deposition techniques did not alter TPU properties. The topography of the TPU-modified surfaces was studied via AFM demonstrating no significant differences between brush and bar coater-modified surfaces, compared to the un-modified TPU (TPU Film). The effect of the surfaces on planktonic bacteria, evaluated by MTT assay, demonstrated their anti-adhesive effect on E. coli, while the bar coater significantly reduced staphylococcal planktonic adhesion and both bacterial biofilms compared to other samples. Interestingly, Pearson’s R coefficient analysis showed that Ra roughness and Haralick’s correlation feature were trend predictors for planktonic bacterial cells adhesion. The surface adhesion property was evaluated against NIH-3T3 murine fibroblasts by MTT and against human fibrinogen and human platelet-rich plasma by ELISA and LDH assay, respectively. An indirect cytotoxicity experiment against NIH-3T3 confirmed the biocompatibility of the TPUs. Overall, the results indicated that the deposition techniques did not alter the antibacterial and anti-adhesive surface properties of modified TPU compared to un-modified TPU, nor its bio- and hemocompatibility, confirming the suitability of TPU brush and bar coater films in the biomedical and pharmaceutical fields.
机译:热塑性聚氨酯 (TPU) 是一种用于各种领域的聚合物,包括医疗应用。在这里,我们旨在验证刷涂机和棒状涂布机沉积技术是否不会改变 TPU 的性能。通过 AFM 研究了 TPU 改性表面的形貌,表明与未改性的 TPU(TPU 薄膜)相比,刷式和棒状涂层机改性表面之间没有显着差异。通过 MTT 测定评估表面对浮游细菌的影响,证明它们对大肠杆菌具有抗粘附作用,而与其他样品相比,棒状涂层机显着降低了葡萄球菌浮游生物粘附和两种细菌生物膜。有趣的是,Pearson 的 R 系数分析表明,Ra 粗糙度和 Haralick 的相关特征是浮游细菌细胞粘附的趋势预测因子。通过 MTT 评估对 NIH-3T3 小鼠成纤维细胞的表面粘附性能,通过 ELISA 和 LDH 测定分别评估对人纤维蛋白原和人富含血小板的血浆的表面粘附性能。针对 NIH-3T3 的间接细胞毒性实验证实了 TPU 的生物相容性。总体而言,结果表明,与未改性的 TPU 相比,沉积技术并没有改变改性 TPU 的抗菌和抗粘连表面性能,也没有改变其生物和血液相容性,证实了 TPU 刷涂膜和棒状涂布膜在生物医学和制药领域的适用性。

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