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Span 60对硬脂酸油凝胶微观结构、结晶动力学及力学性能的影响:深入分析

Effect of Span 60 on the Microstructure, Crystallization Kinetics, and Mechanical Properties of Stearic Acid Oleogels: An In-Depth Analysis.

作者信息

Uvanesh K, Sagiri S S, Senthilguru K, Pramanik K, Banerjee I, Anis Arfat, Al-Zahrani S M, Pal Kunal

机构信息

the Dept. of Biotechnology and Medical Engineering, National Inst. of Technology, Rourkela, Orissa-69008, India.

Dept. of Chemical Engineering, King Saud Univ, Riyadh, -11421, Saudi Arabia.

出版信息

J Food Sci. 2016 Feb;81(2):E380-7. doi: 10.1111/1750-3841.13170. Epub 2015 Dec 16.

Abstract

Modulation of crystallization of stearic acid and its derivatives is important for tuning the properties of stearate oleogels. The present study delineates the crystallization of stearic acid in stearate oleogels in the presence of Span 60. Microarchitecture analysis revealed that stearic acid crystals in the oleogels changed its shape from plate-like structure to a branched architecture in the presence of Span 60. Consequently, a significant variation in the mobility of the solute molecules inside the oleogel (Fluorescence recovery after photobleaching studies, FRAP analysis) was observed. Thermal analysis (gelation kinetics and DSC) revealed shortening of nucleation induction time and secondary crystallization with an increase in the Span 60 concentration. Furthermore, isosolid diagram suggested better physical stability of the formulations at higher proportions of Span 60. XRD analysis indicated that there was a decrease in the crystal size and the crystallinity of the stearic acid crystals with an increase in Span 60 concentration in the Span 60 containing oleogels. However, crystal growth orientation was unidirectional and found unaltered with Span 60 concentration (Avarmi analysis using DSC data). The mechanical study indicated a composition-dependent variation in the viscoelastic properties (instantaneous [τ1 ], intermediate [τ2 ], and delayed [τ3 ] relaxation times) of the formulations. In conclusion, Span 60 can be used to alter the kinetics of the crystallization, crystal habit and crystal structure of stearic acid. This study provides a number of clues that could be used further for developing oleogel based formulation.

摘要

硬脂酸及其衍生物结晶的调控对于调节硬脂酸酯油凝胶的性质至关重要。本研究描述了在Span 60存在下硬脂酸在硬脂酸酯油凝胶中的结晶情况。微观结构分析表明,在Span 60存在下,油凝胶中的硬脂酸晶体形状从板状结构变为分支状结构。因此,观察到油凝胶内溶质分子迁移率有显著变化(光漂白后荧光恢复研究,FRAP分析)。热分析(凝胶化动力学和DSC)表明,随着Span 60浓度的增加,成核诱导时间缩短,二次结晶增加。此外,等固体图表明在较高比例的Span 60下制剂具有更好的物理稳定性。XRD分析表明,在含Span 60的油凝胶中,随着Span 60浓度的增加,硬脂酸晶体的晶体尺寸和结晶度降低。然而,晶体生长取向是单向的,并且发现其不受Span 60浓度影响(使用DSC数据进行Avarmi分析)。力学研究表明制剂的粘弹性性质(瞬时[τ1]、中间[τ2]和延迟[τ3]弛豫时间)存在组成依赖性变化。总之,Span 60可用于改变硬脂酸的结晶动力学、晶体习性和晶体结构。本研究提供了许多线索,可进一步用于开发基于油凝胶的制剂。

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