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Changes in the biocide susceptibility of Staphylococcus epidermidis andEscherichia coli cells associated with rapid attachment to plasticsurfaces

机译:表皮葡萄球菌和大肠杆菌细胞的杀菌剂敏感性与快速附着在塑料表面上的变化

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Differences in opacity between wells of a microtitre plate containing different volumes of inoculated growth medium reflected planktonic growth without any contribution from cells attached at the well surface. Simple algebra and a knowledge of the dependence of optical density upon sample path length (volume) for suspensions of differing cell density enables the generation of growth curves for attached populations (biofilms). In this manner, minimum inhibitory concentrations (MICs) were determined at various stages of growth (0-20 h), both for cells growing attached to the bases of the plate wells and, simultaneously, for cells growing in suspension above them. Biocides included cetrimide, polyhexamethylene biguanide, peracetic acid, phenoxyethanol and chloroxylenol. Results, expressed as planktonic:biofilm MIC ratios, showed susceptibility to change, not only as a function of attachment and biofilm formation, but also with respect to the nature of the chemical agent. In some instances, changes in susceptibility greater than twofold occurred immediately on attachment and could occur in the presence of biocide concentrations which exceeded the MIC.
机译:包含不同体积的接种生长培养基的微量滴定板孔之间的不透明度差异反映了浮游生物的生长,而孔表面附着的细胞没有任何贡献。简单的代数和对不同细胞密度的悬浮液的光密度依赖于样品路径长度(体积)的了解使得能够生成附着种群(生物膜)的生长曲线。以这种方式,在附着于板孔底部的生长细胞以及同时悬浮于其上方的细胞生长的各个阶段(0-20小时)均确定了最低抑菌浓度(MIC)。杀生物剂包括西曲美肽,聚六亚甲基双胍,过乙酸,苯氧乙醇和氯乙氧基酚。用浮游生物:生物膜MIC比表示的结果显示出变化的敏感性,不仅是附着和生物膜形成的函数,而且还涉及化学试剂的性质。在某些情况下,磁化率的变化会在附着后立即发生大于两倍的变化,并且可能会在杀菌剂浓度超过MIC的情况下发生。

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