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A biological assay for detection of heterogeneities in the surface hydrophobicity of polymer coatings exposed to the marine environment

机译:一种用于检测暴露于海洋环境的聚合物涂层表面疏水性异质性的生物测定法

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Minimally adhesive polymers are being developed as potential coatings for use in the marine environment. A #x2018;bioprobe#x2019;, the bacteriumPsychrobactersp. strain SW5, was employed to detect heterogeneities in substratum hydrophobicity at a micrometer level, rather than the millimeter level detected by traditional contact angle measurements. This novel assay was based on substratum#x2010;induced shifts in bacterial morphology and was used to demonstrate that characteristics of these surfaces can be evaluated for maintenance of parameters such as low surface free energy as well as temporal stability when immersed in water. Immersion of developmental substrata in artificial seawater for up to 90d prior to testing with the bioprobe potentially affects the stability of the designed characteristics of the polymers. It is proposed that the shifts in cell and biofilm morphology results from changes influencing the surface hydrophobicity of the polymers. An unpredicted outcome of this testing was the detection of modifications to coatings inferred by the addition of filler particles. Exposure of coatings to the natural microbial community of seawater revealed colonization characteristics that substantiate the results obtained by using the bioindicator.
机译:低粘性聚合物正在被开发为用于海洋环境的潜在涂料。一种“生物探针”,细菌Psychrobactersp。菌株SW5用于检测微米级的基质疏水性的异质性,而不是传统接触角测量检测到的毫米级。这种新颖的测定基于基质诱导的细菌形态变化,用于证明可以评估这些表面的特征,以维持低表面自由能等参数,以及浸入水中时的时间稳定性。在使用生物探针进行测试之前,将发育中的底层浸入人工海水中长达 90 天,可能会影响聚合物设计特性的稳定性。有人提出,细胞和生物膜形态的变化是由影响聚合物表面疏水性的变化引起的。该测试的一个意想不到的结果是检测到通过添加填料颗粒推断出的涂层修饰。涂层暴露于海水的天然微生物群落中,揭示了定植特征,证实了使用生物指示剂获得的结果。

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