Francois P, Vaudaux P, Nurdin N, Mathieu H J, Descouts P, Lew D P
Division of Infectious Diseases, University Hospital, Geneva, Switzerland.
Biomaterials. 1996 Apr;17(7):667-78. doi: 10.1016/0142-9612(96)86736-6.
Central venous catheters are widely used in clinical practice; however, complications such as venous thrombosis or infection are frequent. The physical and biological effects of a coating procedure designed to improve the blood-contacting properties of polyurethane central venous catheters (CVCs) were studied. The surface atomic composition of poly(vinyl pyrrolidone) (PVP)-coated or uncoated Pellethane single lumen CVCs was characterized by electron spectroscopy for chemical analysis (ESCA), which confirmed the presence of an oxygen-rich PVP layer on the former material. Topological analysis of both single and triple lumen CVCs by scanning force microscopy (SFM) revealed a very smooth surface in PVP-coated catheters compared to the more frequent surface irregularities found either in uncoated Pellethane or in four additional randomly selected, commercially available triple lumen polyurethane CVCs. The PVP-coated Pellethane showed a strong reduction in either fibrinogen or fibronectin adsorption compared to all other PVP-free polyurethane CVCs. This decreased protein adsorption led to a proportional reduction in protein-mediated adhesion of either Staphylococcus aureus or Staphylococcus epidermidis and in the binding of a monoclonal antibody directed against the cell-binding domain of fibronectin. Increased surface smoothness and hydrophilic properties of polyurethane CVCs might decrease the risk of bacterial colonization and infection.
中心静脉导管在临床实践中广泛应用;然而,诸如静脉血栓形成或感染等并发症却很常见。本研究旨在探讨一种旨在改善聚氨酯中心静脉导管(CVC)血液接触性能的涂层工艺的物理和生物学效应。通过化学分析电子能谱(ESCA)对聚乙烯吡咯烷酮(PVP)涂层或未涂层的Pellethane单腔CVC的表面原子组成进行了表征,证实了前者材料上存在富含氧的PVP层。通过扫描力显微镜(SFM)对单腔和三腔CVC进行拓扑分析,结果显示,与未涂层的Pellethane或另外随机选择的四种市售三腔聚氨酯CVC中更常见的表面不规则相比,PVP涂层导管的表面非常光滑。与所有其他不含PVP的聚氨酯CVC相比,PVP涂层Pellethane的纤维蛋白原或纤连蛋白吸附显著减少。这种蛋白质吸附的减少导致金黄色葡萄球菌或表皮葡萄球菌的蛋白质介导黏附以及针对纤连蛋白细胞结合域的单克隆抗体的结合成比例减少。聚氨酯CVC表面光滑度和亲水性的增加可能会降低细菌定植和感染的风险。