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首页> 外文期刊>Carbohydrate research >The diastereomers of mannosylerythritol lipids have different interfacial properties and aqueous phase behavior, reflecting the erythritol configuration
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The diastereomers of mannosylerythritol lipids have different interfacial properties and aqueous phase behavior, reflecting the erythritol configuration

机译:甘露糖基赤藓糖醇脂质的非对映异构体具有不同的界面性质和水相行为,反映了赤藓糖醇构型

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摘要

Mannosylerythritol lipids (MELs) produced by yeasts are one of the most promising glycolipid biosurfactants. There are two MEL diastereomers, in which the configurations of the erythritol moieties are opposite. The 4-O-β-d-mannopyranosyl-(2S,3R)-erythritol (S-form) or 4-O-β-d- mannopyranosyl-(2R,3S)-erythritol (R-form) is the hydrophilic domain. In this study, we prepared S- and R-form MEL homologs with similar fatty acyl groups, and compared their interfacial properties. Among the four diastereomers (S-MEL-B and -D/R-MEL-B and -D), R-form MELs showed a higher critical aggregation concentration and hydrophilicity compared to the corresponding S-form. R-form MELs also efficiently formed relatively large vesicles compared to S-form. Moreover, we estimated the binary phase diagram of the MEL-water system and compared the aqueous phase behavior among the four diastereomers. The present MELs self-assembled into a lamellar (L _α) structure at all concentration ranges. Meanwhile, the one-phase L _α region of R-form MELs was wider than those of S-form MELs. R-form MELs may maintain more water between the polar layers in accordance with an extension of the interlayer spacing. These results suggest that the differences in MEL carbohydrate configurations significantly affect interfacial properties, self-assembly, and hydrate ability.
机译:酵母产生的甘露糖基赤藓糖醇脂质(MELs)是最有前途的糖脂生物表面活性剂之一。有两种MEL非对映异构体,其中赤藓糖醇部分的构型相反。 4-O-β-d-甘露吡喃糖基-(2S,3R)-赤藓糖醇(S-形式)或4-O-β-d-甘露糖吡喃糖基-(2R,3S)-赤藓糖醇(R-形式)是亲水域。在这项研究中,我们制备了具有类似脂肪酰基的S型和R型MEL同系物,并比较了它们的界面性质。在四种非对映异构体(S-MEL-B和-D / R-MEL-B和-D)中,与相应的S型相比,R型MEL显示出更高的临界聚集浓度和亲水性。与S型相比,R型MEL还可以有效地形成相对较大的囊泡。此外,我们估算了MEL-水系统的二元相图,并比较了四种非对映异构体之间的水相行为。本发明的MEL在所有浓度范围内均自组装成层状(L_α)结构。同时,R型MEL的单相L_α区比S型MEL的宽。根据层间间距的延长,R型MEL可以在极性层之间保持更多的水。这些结果表明,MEL碳水化合物构型的差异会显着影响界面性质,自组装和水合能力。

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