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茶多酚负载型反相微乳液的制备及氧化稳定性评价

Preparation and Oxidation Stability Evaluation of Tea Polyphenols-Loaded Inverse Micro-Emulsion.

作者信息

Lan Xiaohong, Sun Jingjing, Yang Ying, Chen Mengjie, Liu Jianhua, Wu Jinhong, Wang Zhengwu

机构信息

School of Agriculture and Biology, Shanghai Jiao Tong Univ., Shanghai, China.

School of Food Science, Shanghai Ocean Univ., Shanghai, China.

出版信息

J Food Sci. 2017 May;82(5):1247-1253. doi: 10.1111/1750-3841.13689. Epub 2017 Mar 24.

DOI:10.1111/1750-3841.13689
PMID:28339113
Abstract

Compared to synthetic antioxidants, tea polyphenols (TPs) has its own advantages in edible oil industry, however, the hydrophilic properties have restricted its applications. In this study, the ternary phase diagram of TPs-loaded micro-emulsion (ME) system was constructed, in which glyceryl monooleate (GMO), Tween80, linoleic acid as the surfactants, ethanol as the co-surfactant and soybean, corn, sunflower oil as the oil phase, have been used for the preparation of ME. The results indicated that a composition of ME (57.5% oil, 18% Tween80, 18% GMO, 4% Linolic acid, and 2.5% water+ethanol) could dissolve maximum water and could stable for 2 mo at room temperature with an average diameter of 6 to 7 nm, as detected by means of dynamic light scattering (DLS). The loaded of TPs into ME led to an increase of particle size to 15 to 16 nm, due to increased polarity of the water phase. The antioxidant capacity of TPs in ME was characterized by the peroxide value (POV) method. The addition of 1% water phase with 0.1 g/mL TPs could retain the POV at low value for 30 d at accelerating temperature 50 °C. Meanwhile, comparing the three edible oil, ME with corn oil has lower conductivity and higher value of POV during the storage. This work provides an efficient and environmentally friendly approach for the preparation of TPs-loaded ME, which is beneficial to the application of TPs in edible oil.

摘要

与合成抗氧化剂相比,茶多酚(TPs)在食用油工业中具有自身优势,然而,其亲水性限制了它的应用。本研究构建了负载TPs的微乳液(ME)体系的三元相图,其中使用单油酸甘油酯(GMO)、吐温80、亚油酸作为表面活性剂,乙醇作为助表面活性剂,大豆油、玉米油、葵花籽油作为油相来制备ME。结果表明,一种ME组成(57.5%油、18%吐温80、18% GMO、4%亚油酸以及2.5%水+乙醇)能够溶解最多的水,并且在室温下可稳定2个月,通过动态光散射(DLS)检测其平均直径为6至7纳米。由于水相极性增加,TPs负载到ME中导致粒径增加至15至16纳米。采用过氧化值(POV)法表征了TPs在ME中的抗氧化能力。添加含0.1 g/mL TPs的1%水相在50℃加速温度下可使POV在30天内保持低值。同时,比较三种食用油,含玉米油的ME在储存期间具有较低的电导率和较高的POV值。这项工作为制备负载TPs的ME提供了一种高效且环保的方法,这有利于TPs在食用油中的应用。

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