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葡萄球菌与各种合成聚合物的附着。

Attachment of staphylococci to various synthetic polymers.

作者信息

Ludwicka A, Jansen B, Wadström T, Pulverer G

出版信息

Zentralbl Bakteriol Mikrobiol Hyg A. 1984 Apr;256(4):479-89. doi: 10.1016/s0174-3031(84)80024-4.

Abstract

Attachment of staphylococci to different synthetic polymers used for medical purposes was studied in applying the bioluminescent technique. The number of attached bacterial cells was determined by measuring the light emission resulting from the reaction between firefly luciferase and ATP present in adhered staphylococcal cells. It was shown that staphylococci attach to synthetic polymers within a few minutes, although one hour incubation is required to reach a constant maximum value of attached cells. Ten different synthetic polymers and five Staphyloccocus epidermidis strains were investigated in our study. The relationship between surface properties of polymers and bacterial attachment was studied. Various physicochemical parameters of synthetic polymers and bacteria were determined (contact angle, surface tension). It was demonstrated that bacterial attachment decreases with decreasing contact angle and with increasing surface tension of synthetic materials. Modifications of surface charge and hydrophobicity of solid materials were also investigated. It could be proved that especially negatively charged and hydrophilic synthetic polymers show very decreased staphylococcal attachment.

摘要

采用生物发光技术研究了葡萄球菌与用于医疗目的的不同合成聚合物的附着情况。通过测量萤火虫荧光素酶与附着在葡萄球菌细胞中的ATP反应产生的发光来确定附着细菌细胞的数量。结果表明,葡萄球菌在几分钟内就能附着在合成聚合物上,不过需要孵育一小时才能达到附着细胞的恒定最大值。在我们的研究中,研究了十种不同的合成聚合物和五种表皮葡萄球菌菌株。研究了聚合物表面性质与细菌附着之间的关系。测定了合成聚合物和细菌的各种物理化学参数(接触角、表面张力)。结果表明,随着合成材料接触角的减小和表面张力的增加,细菌附着减少。还研究了固体材料表面电荷和疏水性的变化。可以证明,特别是带负电荷和亲水的合成聚合物显示出葡萄球菌附着明显减少。

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