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表皮葡萄球菌对生物医学聚合物的黏附:表面热力学和血液动力学剪切条件的作用

Adhesion of Staphylococcus epidermidis to biomedical polymers: contributions of surface thermodynamics and hemodynamic shear conditions.

作者信息

Wang I W, Anderson J M, Jacobs M R, Marchant R E

机构信息

Department of Macromolecular Science, Case Western Reserve University, Cleveland, Ohio 44106, USA.

出版信息

J Biomed Mater Res. 1995 Apr;29(4):485-93. doi: 10.1002/jbm.820290408.

Abstract

Adhesion studies of Staphylococcus epidermidis RP62A were conducted using a rotating disk system to determine the roles of surface physicochemistry and topographies under physiologic shear conditions. Six materials were investigated: biomedical reference polyethylene and polydimethylsiloxane; argon plasma-treated reference polyethylene (Ar-PE); Silastic; expanded polytetrafluoroethylene; and woven Dacron. All of the polymers except Dacron demonstrated reduced bacterial adhesion with increasing shear stress. Argon plasma treatment of polyethylene reduced the level of staphylococcal adhesion. Adsorption of human plasma proteins effected significantly lower numbers of adherent bacteria. The lowest adhesion was observed for Ar-PE in 1% human plasma protein solution, whereas Dacron had the highest number of adherent bacteria. The high adhesion on Dacron was attributed to increased bacterial flux caused by topography-induced turbulent flow and physical entrapment of the bacteria in the fiber interstices. The results indicate that the driving force for S. epidermidis adhesion is strongly influenced by substrate physicochemistry, but this may be dominated by physical forces such as shear and turbulence.

摘要

使用旋转圆盘系统对表皮葡萄球菌RP62A进行黏附研究,以确定生理剪切条件下表面物理化学和形貌的作用。研究了六种材料:生物医学参考聚乙烯和聚二甲基硅氧烷;氩等离子体处理的参考聚乙烯(Ar-PE);硅橡胶;膨体聚四氟乙烯;以及编织涤纶。除涤纶外,所有聚合物的细菌黏附都随剪切应力增加而减少。聚乙烯经氩等离子体处理后,葡萄球菌黏附水平降低。人血浆蛋白的吸附使黏附细菌数量显著减少。在1%人血浆蛋白溶液中,Ar-PE的黏附最低,而涤纶的黏附细菌数量最多。涤纶上的高黏附归因于形貌诱导的湍流导致细菌通量增加以及细菌在纤维间隙中的物理截留。结果表明,表皮葡萄球菌黏附的驱动力受底物物理化学的强烈影响,但这可能由剪切和湍流等物理力主导。

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