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通过硬脂酸衍生物对葵花籽油进行结构化:实验和分子建模研究。

Structuring of sunflower oil by stearic acid derivatives: Experimental and molecular modelling studies.

机构信息

School of Food Science, Henan Institute of Science and Technology, Xinxiang 453003, China.

Department of Food Science and Engineering, Jinan University, Guangzhou 510632, China; Department of Food Science, Rutgers University, 65 Dudley Road, New Brunswick, NJ 08901, United States.

出版信息

Food Chem. 2020 Sep 15;324:126801. doi: 10.1016/j.foodchem.2020.126801. Epub 2020 Apr 13.

Abstract

Structuring of vegetable oils has potential application in food, pharmaceutical and cosmetic products. In this study, structuring effects of stearic acid derivatives on sunflower seed oil were systematically investigated by experimental and molecular simulation methods. Stearic acid (SA), 12-hydroxy stearic acid (HSA) and 2-hydroxyethyl stearate (HES) were able to structure sunflower seed oil, among which the structuring ability of HES was reported for the first time. The oleogel formed with HSA exhibited good mechanical properties (such as hardness, fracturability, adhesiveness, chewiness and storage modulus), which coincided with its highest solid fat content and degree of crystallinity. Oleogels containing SA and HES showed similar mechanical properties. Both the molecular dynamics (MD) simulation and independent gradient model (IGM) confirmed that the HSA dimer possessed the strongest interaction during the self-assembly process while the dimers of HES and SA had similar interactions, which could explain their structuring performance.

摘要

植物油的结构化在食品、制药和化妆品产品中有潜在的应用。在这项研究中,通过实验和分子模拟方法系统地研究了硬脂酸衍生物对葵花籽油的结构化作用。硬脂酸(SA)、12-羟基硬脂酸(HSA)和 2-羟乙基硬脂酸(HES)能够结构化葵花籽油,其中 HES 的结构化能力是首次报道。用 HSA 形成的油凝胶表现出良好的机械性能(如硬度、易碎性、粘性、咀嚼性和储能模量),这与其最高的固体脂肪含量和结晶度一致。含有 SA 和 HES 的油凝胶表现出相似的机械性能。分子动力学(MD)模拟和独立梯度模型(IGM)都证实,HSA 二聚体在自组装过程中具有最强的相互作用,而 HES 和 SA 的二聚体具有相似的相互作用,这可以解释它们的结构化性能。

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