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Carbon Nanotube/Poly(dimethylsiloxane) Composite Materials to Reduce Bacterial Adhesion

机译:碳纳米管/聚(二甲基硅氧烷)复合材料以降低细菌粘附

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摘要

Different studies have shown that the incorporation of carbon nanotubes (CNTs) into poly(dimethylsiloxane) (PDMS) enables the production of composite materials with enhanced properties, which can find important applications in the biomedical field. In the present work, CNT/PDMS composite materials have been prepared to evaluate the effects of pristine and chemically functionalized CNT incorporation into PDMS on the composite’s thermal, electrical, and surface properties on bacterial adhesion in dynamic conditions. Initial bacterial adhesion was studied using a parallel-plate flow chamber assay performed in conditions prevailing in urinary tract devices (catheters and stents) using as a model organism and PDMS as a control due to its relevance in these applications. The results indicated that the introduction of the CNTs in the PDMS matrix yielded, in general, less bacterial adhesion than the PDMS alone and that the reduction could be dependent on the surface chemistry of CNTs, with less adhesion obtained on the composites with pristine rather than functionalized CNTs. It was also shown CNT pre-treatment and incorporation by different methods affected the electrical properties of the composites when compared to PDMS. Composites enabling a 60% reduction in cell adhesion were obtained by CNT treatment by ball-milling, whereas an increase in electrical conductivity of seven orders of magnitude was obtained after solvent-mediated incorporation. The results suggest even at low CNT loading values (1%), these treatments may be beneficial for the production of CNT composites with application in biomedical devices for the urinary tract and for other applications where electrical conductance is required.
机译:不同的研究表明,将碳纳米管(CNT)掺入聚(二甲基硅氧烷)(PDMS)中,使得复合材料具有增强性能,可以在生物医学领域中找到重要的应用。在本作本作中,已准备评估基润和化学官能化的CNT掺入在动态条件下细菌粘附性上的PDMS上的丙氨酸和化学官能化的CNT掺入PDMS上的影响。使用与模型生物和PDMS在尿路器装置(导管和支架)在尿路器装置(导管和支架)的条件下进行的平行板流动室测定进行研究初始细菌粘附,作为其在这些应用中的相关性。结果表明,在PDMS基质中引入CNT,通常,单独的PDMS较少,细菌粘附较少,并且还原可能取决于CNT的表面化学,并且在具有原始的复合材料上获得的粘附性较少功能化CNT。还显示CNT预处理和通过不同方法的掺入,与PDM相比,不同方法影响复合材料的电性质。通过球磨的CNT处理获得了能够降低细胞粘附的复合材料,而溶剂介导的掺入后,得到七个幅度的电导率的增加。结果表明即使在低CNT加载值(1%)时,这些处理可能是有益于生产CNT复合材料,其在泌尿道的生物医学装置中应用以及需要电导的其他应用。

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