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用于模拟留香织物柔软剂的香料注入阳离子囊泡的小角X射线散射和电子自旋共振光谱研究。

Small Angle X-ray Scattering and Electron Spin Resonance Spectroscopy Study on Fragrance Infused Cationic Vesicles Modeling Scent-Releasing Fabric Softeners.

作者信息

Ogura Taku, Sato Takaaki, Abe Masahiko, Okano Tomomichi

机构信息

Research & Development Headquarters, LION Corporation.

Research Institute for Science and Technology, Tokyo University of Science.

出版信息

J Oleo Sci. 2018 Feb 1;67(2):177-186. doi: 10.5650/jos.ess17186. Epub 2018 Jan 23.

Abstract

Industrially relevant systems for household and personal-care products often involve a large number of components. Such multiple component formulations are indispensable and effective for functionalization of the products, but may simultaneously provide more complex structural features compared to those in ideal systems comprising a smaller number of highly pure substances. Using cryogenic transmission electron microscopy (cryo-TEM), small angle X-ray scattering (SAXS), and electron spin resonance (ESR) spectroscopy, we have investigated effects of fragrance-incorporation into cationic vesicles on their bilayer structures and membrane-membrane interactions. Cationic vesicles were prepared from TEQ surfactant, whose major component was di(alkyl fatty ester) quaternary ammonium methosulfate, and fragrance components, l-menthol, linalool, and d-limonene, were infused into the vesicle membranes to model scent-releasing fabric softeners. The cryo-TEM images confirm formation of multilamellar vesicles (MLVs). Generalized indirect Fourier transformation (GIFT) analysis of the SAXS intensities based on the modified Caillé structure factor model reveals that incorporation of a more hydrophobic fragrance component leads to a more pronounced increase of the surface separation (water layer thickness). Furthermore, the fragrance-infused systems show longer-range order of the bilayer correlations and enhanced undulation fluctuation of the membranes than those in the TEQ alone system. The spin-label ESR results indicate different restricted molecular motions in the TEQ bilayers depending on the labeled position and their marked changes upon addition of the fragrance components, suggesting different mixing schemes and solubilization positions of the fragrance molecules in the TEQ bilayers. The present data have demonstrated how the infused fragrance molecules having different hydrophobicity and molecular architectures into the cationic vesicles affect the membrane structures and the intermembrane interactions, which may provide useful information for precisely controlling a fragrance-releasing property.

摘要

家用和个人护理产品的工业相关体系通常涉及大量成分。这种多组分配方对于产品的功能化而言不可或缺且有效,但与那些由较少数量的高纯度物质组成的理想体系相比,可能同时具有更复杂的结构特征。我们使用低温透射电子显微镜(cryo-TEM)、小角X射线散射(SAXS)和电子自旋共振(ESR)光谱,研究了将香料掺入阳离子囊泡对其双层结构和膜-膜相互作用的影响。阳离子囊泡由TEQ表面活性剂制备而成,其主要成分是二(烷基脂肪酸酯)甲基硫酸季铵盐,并且将香料成分l-薄荷醇、芳樟醇和d-柠檬烯注入囊泡膜中以模拟释放香味的织物柔软剂。低温透射电子显微镜图像证实了多层囊泡(MLV)的形成。基于改进的凯耶结构因子模型对SAXS强度进行广义间接傅里叶变换(GIFT)分析表明,掺入疏水性更强的香料成分会导致表面间距(水层厚度)更显著地增加。此外,与仅含TEQ的体系相比,注入香料的体系显示出双层相关性的长程有序性以及膜起伏波动的增强。自旋标记ESR结果表明,TEQ双层中根据标记位置存在不同的受限分子运动,并且添加香料成分后这些运动会发生显著变化,这表明香料分子在TEQ双层中有不同的混合方案和溶解位置。目前的数据已经证明,将具有不同疏水性和分子结构的注入香料分子掺入阳离子囊泡中会如何影响膜结构和膜间相互作用,这可能为精确控制香料释放特性提供有用信息。

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