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A rapid, non-destructive method for the determination of Staphylococcus epidermidis adhesion to surfaces using quartz crystal resonant sensor technology

机译:使用石英晶体共振传感器技术快速,无损测定表皮葡萄球菌对表面的附着力

摘要

Aims: To investigate the use of quartz crystal resonant sensor (QCRS) technology to determine the adhesion of Staphylococcus epidermidis to fibronectin-coated surfaces.ududMethods and Results: QCRS sensors (14 MHz) with 4 mm gold electrodes were coated with fibronectin and exposed for 15 min to suspensions of Staph. epidermidis ranging in concentration from 1 × 102 to 1 × 106 cfu ml-1. Changes in resonant frequency were recorded and showed a linear relationship with the logarithm of cell concentration over the range tested.ududConclusions: QCRS technology was shown to be a rapid, sensitive and non-destructive method for measuring the adhesion of bacteria to surfaces.ududSignificance and Impact of the Study: This report demonstrates that QCRS technology has the potential to be used for a range of applications requiring measurement of bacteria on surfaces. In particular, it may be used for the real-time monitoring of bacterial biofilm formation.
机译:目的:研究使用石英晶体共振传感器(QCRS)技术确定表皮葡萄球菌对纤连蛋白包被的表面的粘附。 ud ud方法和结果:带有4 mm金电极的QCRS传感器(14 MHz)被纤连蛋白包被并暴露于Staph悬浮液15分钟。表皮的浓度范围从1×102到1×106 cfu ml-1。记录共振频率的变化,并显示其在测试范围内与细胞浓度的对数呈线性关系。 ud ud结论:QCRS技术被证明是一种快速,灵敏且无损的方法,用于测量细菌与表面的粘附力。 ud ud研究的意义和影响:该报告表明,QCRS技术有潜力用于需要测量表面细菌的一系列应用中。特别是,它可用于细菌生物膜形成的实时监控。

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