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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Comparison of the supramolecular structures of two glyco lipids with chiral and nonchiral methyl-branched alkyl chains from natural sources
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Comparison of the supramolecular structures of two glyco lipids with chiral and nonchiral methyl-branched alkyl chains from natural sources

机译:天然来源手性和非手性甲基支链烷基链的两种糖脂的超分子结构比较

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摘要

Two alkyl glycosides with the same type of disaccharide headgroups (melibiose) and different methyl-branched alkyl chains, short chiral [(2R,4R,6R,8R)-2,4,6,8-tetramethyldecyl, extracted from an animal source] and long nonchiral (3,7,11,15-tetramethylhexadecyl, from a plant source), were synthesized. The supramolecular aggregate structure formed in dilute solutions was investigated by small-angle neutron scattering and surface tension measurements. The lyotropic phase diagram was studied by differential scanning calorimetry and water penetration scans. The thermotropic phase behavior was investigated by polarizing microscopy. The compounds showed unusual phase behavior: (i) The liquid-crystalline polymorphism is reduced to only form smectic A phases in the pure state; the formation of lyotropic phases such as hexagonal or lamellar phases was not observed. (ii) The compound with the longer nonchiral alkyl chain is more soluble in water than the one with the shorter chiral chain, most likely because of the different flexibilities of the chains. (iii) For the long-chain compound, the formation of micelles is observed, whereas the short-chain compound forms large disklike/bilayer aggregates. The method of methylation of the chain controls the self-assembly and can explain different biological functions for either plants (variable temperature) or animals (constant temperature).
机译:具有相同类型的二糖头基(半乳糖)和不同的甲基支链烷基链的两个烷基糖苷,短手性[(2R,4R,6R,8R)-2,4,6,8-四甲基癸基,从动物来源中提取]合成了长的非手性化合物(3,7,11,15-四甲基十六烷基,来自植物)。通过小角度中子散射和表面张力测量研究了在稀溶液中形成的超分子聚集体结构。通过差示扫描量热法和透水扫描研究了溶致相图。通过偏光显微镜研究了热致相行为。这些化合物表现出不同寻常的相行为:(i)液晶多态性被还原为仅以纯态形成近晶A相;没有观察到溶致相的形成,例如六方相或层状相。 (ii)具有较长非手性烷基链的化合物比具有较短手性链的化合物在水中的溶解度更高,这很可能是由于链的柔性不同所致。 (iii)对于长链化合物,观察到胶束的形成,而短链化合物形成大的盘状/双层聚集体。链的甲基化方法控制着自组装,并可以解释植物(可变温度)或动物(恒定温度)的不同生物学功能。

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