Imura Tomohiro, Kawamura Daisuke, Taira Toshiaki, Morita Tomotake, Fukuoka Tokuma, Aburai Kenichi, Sakai Hideki, Abe Masahiko, Kitamoto Dai
Research Institute for Innovation in Sustainable Chemistry, National Institute of Advanced Industrial Science and Technology (AIST).
J Oleo Sci. 2014;63(1):67-73. doi: 10.5650/jos.ess13047. Epub 2013 Dec 24.
The synergic effect and miscibility of the lactonic and acidic forms of sophorolipids (SLs) produced by Starmerella bombicola NBRC 10243 were first evaluated through atomic force microscopy (AFM), together with the Langmuir monolayer technique. The π-A isotherm of a pure lactonic sophorolipid (LS) monolayer mostly exhibited a liquid expanded monolayer, while that of an acidic sophorolipid (AS) monolayer showed a liquid condensed monolayer, suggesting that the lactonization of SLs makes the molecules more bulky and prevents them from adopting a close-packed arrangement. Plots of the mean area per molecule of mixed LS/AS monolayers gave positive deviations from the ideal curves, implying that the LS and AS molecules are miscible. Interestingly, the positive deviation of excess area (Aex) from ideality was most significant at a mole fraction (XAS) of 0.3, which closely resembles the composition of the LS/AS mixture secreted by S. bombicola in culture. The AFM images of mixed LS/AS monolayers transferred at 20 mN/m revealed no phase-separated microdomain structures, but rather showed small protruding objects for all compositions, indicating that LS and AS are partially miscible, as predicted by the positive deviations from the ideal curves. Cross-section analysis of the AFM images indicated that the observed protruding objects are AS-rich monolayers formed on the LS/AS monolayer. Our results clearly demonstrate that AFM combined with the Langmuir technique is useful for the exploration of the miscibility and synergic effects of microbial products.
首次通过原子力显微镜(AFM)以及朗缪尔单分子层技术评估了由星形假丝酵母NBRC 10243产生的槐糖脂(SLs)内酯形式和酸性形式的协同效应及互溶性。纯内酯型槐糖脂(LS)单分子层的π-A等温线大多呈现出液体扩张单分子层,而酸性槐糖脂(AS)单分子层的等温线则显示为液体凝聚单分子层,这表明SLs的内酯化使分子体积更大,阻止它们形成紧密堆积的排列。混合LS/AS单分子层中每个分子的平均面积图与理想曲线呈现正偏差,这意味着LS和AS分子是可互溶的。有趣的是,在摩尔分数(XAS)为0.3时,过剩面积(Aex)与理想值的正偏差最为显著,这与星形假丝酵母在培养物中分泌的LS/AS混合物的组成非常相似。在20 mN/m下转移的混合LS/AS单分子层的AFM图像未显示相分离的微区结构,而是对于所有组成都显示出小的突出物,这表明LS和AS是部分互溶的,正如理想曲线的正偏差所预测的那样。AFM图像的横截面分析表明,观察到的突出物是在LS/AS单分子层上形成的富含AS的单分子层。我们的结果清楚地表明,AFM与朗缪尔技术相结合对于探索微生物产物的互溶性和协同效应是有用的。