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Elucidation of density profile of self-assembled sitosterol + oryzanol tubules with small-angle neutron scattering

机译:小角中子散射的自组装谷甾醇+ Oryzanol小管密度剖面阐明

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Small-angle neutron scattering (SANS) experiments have been performed on self-assembled tubules of sitosterol and oryzanol in triglyceride oils to investigate details of their structure. Alternative organic phases (deuterated and non-deuterated decane, limonene, castor oil and eugenol) were used to both vary the contrast with respect to the tubules and investigate the influence of solvent chemistry. The tubules were found to be composed of an inner and an outer shell containing the androsterol group of sitosterol or oryzanol and the ferulic acid moieties in the oryzanol molecule, respectively. While the inner shell has previously been detected in SAXS experiments, the outer shell was not discernible due to similar scattering length density with respect to the surrounding solvent for X-rays. By performing contrast variation SANS experiments, both for the solvent and structurant, a far more detailed description of the self-assembled system is obtainable. A model is introduced to fit the SANS data; we find that the dimensions of the inner shell agree quantitatively with the analysis performed in earlier SAXS data (radius of 39.4 ± 5.6 A for core and inner shell together, wall thickness of 15.1 ± 5.5 A). However, the newly revealed outer shell was found to be thinner than the inner shell (wall thickness 8.0 ± 6.5 A). The changes in the scattering patterns may be explained in terms of the contrast between the structurant and the organic phase and does not require any subtle indirect effects caused by the presence of water, other than water promoting the formation of sitosterol monohydrate in emulsions with aqueous phases with high water activity.
机译:已经在甘油三酯油中的谷甾醇和奥替唑的自组装小管上进行了小角度中子散射(SAN)实验,以研究其结构的细节。替代的有机相(氘代和非氘代的癸烷,柠檬烯,蓖麻油和丁烯醇)用于相对于小管的对比度和研究溶剂化学的影响。发现小管由包含含有苯甲酸溶胶或奥替唑醇组的androsterol组和奥昔洛醇分子中的阿魏酸部分的外壳组成。虽然先前在萨克斯实验中检测到内壳,但由于相对于X射线的周围溶剂的散射长度密度类似,外壳不可辨别。通过对溶剂和结构剂进行对比变化SANS实验,可以获得对自组装系统的更详细描述。引入模型以适应SANS数据;我们发现内壳的尺寸定量地与早期萨克斯数据(用于芯和内壳39.4±5.6a的半径一起进行的分析,壁厚为15.1±5.5a)。然而,发现新揭示的外壳比内壳(壁厚8.0±6.5A)薄。散射模式的变化可以根据结构剂和有机相之间的对比解释,并且不需要由水的存在引起的任何微妙的间接效应,除了水中促进与水相的乳液中的谷甾醇单水合物形成含水量高。

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