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Chemical and Physical Characterization of Interfacial-Active Lipids from Rhodococcus erythropolis Grown on n-Alkanes

机译:n-烷烃上生长的红球红球菌界面活性脂质的化学和物理表征

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Lipophilic compounds of the culture suspension containing Rhodococcus erythropolis DSM43215 had surfactant properties when the bacteria were cultivated with n-alkanes as the sole carbon source. Thirteen main components from a dichloromethane-methanol extract of the R. erythropolis cultures were isolated and characterized to specify quantitatively their surfactant properties, e.g., minimum surface and interfacial tensions and critical micelle concentrations. The interfacial activity of the organic extract was dominated by α,α-trehalose-6,6′-dicorynomycolates which reduced interfacial tension from 44 to 18 mN/m. Phosphatidylethanolamines which were also present in the organic extract reduced the interfacial tension below 1 mN/m. The trehalose corynomycolates had extremely low critical micelle concentrations in high-salinity solutions, and the interfacial properties were stabile in solutions with a wide range of pH and ionic strength.
机译:当使用正构烷烃作为唯一碳源培养细菌时,含有红球红球菌DSM43215的培养悬浮液的亲脂性化合物具有表面活性剂的特性。从红红球菌培养物的二氯甲烷-甲醇提取物中分离出十三种主要成分,并进行表征以定量指定其表面活性剂性质,例如最小的表面和界面张力以及临界胶束浓度。有机提取物的界面活性主要由α,α-海藻糖-6,6'-双链藻糖酸酯控制,界面张力从44 mN / m降低到18 mN / m。有机提取物中也存在的磷脂酰乙醇胺将界面张力降低到1 mN / m以下。在高盐溶液中,海藻糖椰子酸酯具有极低的临界胶束浓度,并且在具有宽范围的pH和离子强度的溶液中,界面性质是稳定的。

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