首页> 美国卫生研究院文献>Microorganisms >Methyl Potassium Siliconate and Siloxane Inhibit the Formation of Multispecies Biofilms on Ceramic Roof Tiles: Efficiency and Comparison of Two Common Water Repellents
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Methyl Potassium Siliconate and Siloxane Inhibit the Formation of Multispecies Biofilms on Ceramic Roof Tiles: Efficiency and Comparison of Two Common Water Repellents

机译:甲基硅酸钾和硅氧烷在陶瓷屋顶瓦片上抑制了多层生物膜的形成:两个常见的防水剂的效率和比较

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摘要

Ceramic roof tiles are widespread marketed building materials, rapidly colonized by microorganisms that form multispecies biofilms on their surface and play crucial roles in biodeterioration processes. Coating tiles with water repellents is a pervasive industrial strategy employed to prevent liquid water penetration and slow biodeterioration. Very few studies have examined the links between the characteristics of water-repellent coatings and biofilm colonization patterns. Our work aims to compare the effects of coating tiles with two common water repellents (siliconate and siloxane) on the growth of colonizing microbes. We combined in situ exposure of tiles for over six years and macroscopic and microscopic observations with in vitro biotests, relying on the use of algal and fungal models. Our data showed that (1) tiles coated with water repellents were macroscopically less colonized by lichens (2) a significant fungal biofilm development at the microscopic scale (3) water repellents had very contrasting effects on our model strains. These data reinforce the great interest for industry to conduct more studies linking the nature of the water repellents with the composition of colonizing multispecies biofilms. The long-term objective is to improve the available water repellents and better adapt their selection to the nature of microbial colonization.
机译:陶瓷屋顶瓦片是广泛的销售建筑材料,通过微生物迅速沉积,在它们的表面上形成多层生物膜,并在生物传达过程中起着至关重要的作用。具有防水器的涂层瓷砖是一种普遍的工业策略,用于防止液体渗透和慢的生物传播者。很少有研究检查了防水涂层和生物膜定植模式的特征之间的联系。我们的工作旨在比较涂层瓷砖用两种常见的防水剂(硅酸盐和硅氧烷)的影响对殖民化微生物的生长。我们与六年多的瓷砖相结合,宏观和微观观察与体外生物节目,依赖于藻类和真菌模型的使用。我们的数据显示(1)涂有防水剂的瓷砖宏观均由地衣(2)在微观测量(3)水驱泻药上的显着真菌生物膜发育造成的显着的真菌生物膜发育对我们的模型菌株具有非常对比的影响。这些数据强化了行业的巨大兴趣,以开展更多研究与殖民多数生物膜的组成将水驱挡剂的性质联系起来。长期目标是改善可用的防水障碍,更好地调整它们对微生物定植的性质的选择。

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