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Impact of Alkyl Polyglucosides Surfactant Lutensol GD 70 on Modification of Bacterial Cell Surface Properties

机译:烷基多​​糖苷表面活性剂Lutensol GD 70对细菌细胞表面性质修饰的影响

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摘要

Alkyl polyglucosides, due to their low toxicity and environmental compatibility, could be used in biodegradation of hydrophobic compounds. In this study, the influence of Lutensol GD 70 on the cell hydrophobicity and zeta potential was measured. The particle size distribution and surfactant biodegradation were also investigated. Microbacterium sp. strain E19, Pseudomonas stutzeri strain 9, and the same strain cultivated in stress conditions were used in studies. Adding surfactant to the diesel oil system resulted in an increase of the cell surface hydrophobicity and the formation of cell aggregates (a high polydispersity index). The correlation between cell hydrophobicity and zeta potential in examined samples was not found. The results showed a significant influence of Lutensol GD 70 on the changes in cell surface properties. Moreover, a high biodegradation of a surfactant (over 50 %) by tested strains was observed. The biodegradation of Lutensol GD 70 depends on the length of both polar and nonpolar chains. A long-term contact with diesel oil of stressed strain modifies not only cell surface properties but also its ability to a surfactant biodegradation.
机译:烷基聚葡糖苷由于其低毒性和环境相容性,可用于疏水化合物的生物降解。在这项研究中,测量了Lutensol GD 70对细胞疏水性和ζ电位的影响。还研究了粒度分布和表面活性剂的生物降解。微小杆菌在研究中使用了E19菌株,斯氏假单胞菌9菌株和在压力条件下培养的相同菌株。将表面活性剂添加到柴油系统中导致细胞表面疏水性的增加和细胞聚集体的形成(高多分散指数)。在所检查的样品中未发现细胞疏水性和ζ电位之间的相关性。结果表明,Lutensol GD 70对细胞表面性质的变化具有重大影响。此外,还观察到了测试菌株对表面活性剂的高度生物降解作用(超过50%)。 Lutensol GD 70的生物降解取决于极性和非极性链的长度。与应力应变的柴油长期接触不仅会改变细胞表面性能,而且会改变其表面活性剂生物降解的能力。

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