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Polyurethane-Based Composites: Effects of Antibacterial Fillers on the Physical-Mechanical Behavior of Thermoplastic Polyurethanes

机译:聚氨酯基复合材料:抗菌填料对热塑性聚氨酯物理机械性能的影响

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摘要

The challenge to manufacture medical devices with specific antibacterial functions, and the growing demand for systems able to limit bacterial resistance growth, necessitates the development of new technologies which can be easily produced at an industrial level. The object of this work was the study and the development of silver, titanium dioxide, and chitosan composites for the realization and/or implementation of biomedical devices. Thermoplastic elastomeric polyurethane was selected and used as matrix for the various antibacterial functions introduced during the processing phase (melt compounding). This strategy was employed to directly incorporate antimicrobial agents into the main constituent material of the devices themselves. With the exception of the composite filled with titanium dioxide, all of the other tested composites were shown to possess satisfactory mechanical properties. The best antibacterial effects were obtained with all the composites against : viability was efficiently inhibited by the prepared materials in four different bacterial culture concentrations.
机译:制造具有特定抗菌功能的医疗设备面临的挑战,以及对能够限制细菌耐药性增长的系统的需求不断增长,因此需要开发可以在工业水平上轻松生产的新技术。这项工作的目的是研究和开发用于实现和/或实施生物医学设备的银,二氧化钛和壳聚糖复合材料。选择热塑性弹性体聚氨酯,并将其用作加工阶段(熔体混合)引入的各种抗菌功能的基质。采用这种策略将抗菌剂直接掺入设备本身的主要组成材料中。除了填充有二氧化钛的复合材料外,所有其他测试的复合材料均显示出令人满意的机械性能。所有复合材料均对以下细菌具有最佳的抗菌作用:所制备的材料在四种不同的细菌培养物浓度下均能有效抑制其生存能力。

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