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以菊粉为壁材通过喷雾干燥法对γ-谷维素进行微胶囊化:微胶囊配方的优化及表征

Microencapsulation of gamma oryzanol using inulin as wall material by spray drying: optimization of formulation and characterization of microcapsules.

作者信息

Rodsuwan Ubonphan, Thumthanaruk Benjawan, Vatanyoopaisarn Savitri, Thisayakorn Krittiya, Zhong Qixin, Panjawattanangkul Somjate, Rungsardthong Vilai

机构信息

Department of Agro-Industrial, Food and Environmental Technology, Faculty of Applied Science, Food and Agro-Industrial Research Center, King Mongkut's University of Technology North Bangkok, Bangkok, 10800 Thailand.

Expert Center of Innovative Herbal Products (InnoHerb), Thailand Institute of Scientific and Technological Research (TISTR), Pathum Thani, 12120 Thailand.

出版信息

J Food Sci Technol. 2024 Nov;61(11):2177-2184. doi: 10.1007/s13197-024-05988-0. Epub 2024 May 30.

Abstract

UNLABELLED

Gamma oryzanol (GO) is the rice bioactive compound which presents various therapeutic effects. However, GO is relatively unstable to environmental factors during processing and storage. The objective of this work was to produce GO microparticles encapsulated with inulin and Tween80 (GOINs) by spray-drying. Response surface analysis was used for the optimization of the encapsulation to get maximum % encapsulation efficiency (%EE) of GO. Three process variables for the concentration of 10-20% inulin (w/v), 3-5% Tween 80 (w/v), and 3-5% GO (w/v) were investigated. Quadratic polynomial regression model for the optimization with R at 0.92 was obtained from the study The optimum condition was 20% inulin (w/v), 3% Tween 80 (w/v), and 3% GO (w/v) which yielded a high % EE of 82.63% and particles size at 1,154.60 ± 28.85 nm Fourier transform infrared spectroscopy demonstrated that GO was encapsulated inside the inulin matrix. Our study provided potential and improved hygroscopicity ranged from 6.51 to 10.22 g HO/100 g dry weight of GO in spray-dried microcapsules.

SUPPLEMENTARY INFORMATION

The online version contains supplementary material available at 10.1007/s13197-024-05988-0.

摘要

未标注

γ-谷维素(GO)是一种具有多种治疗作用的大米生物活性化合物。然而,GO在加工和储存过程中对环境因素相对不稳定。这项工作的目的是通过喷雾干燥制备用菊粉和吐温80包封的GO微粒(GOINs)。采用响应面分析法优化包封工艺,以获得最大的GO包封率(%EE)。研究了10 - 20%菊粉(w/v)、3 - 5%吐温80(w/v)和3 - 5% GO(w/v)浓度的三个工艺变量。该研究得到了用于优化的二次多项式回归模型,R值为0.92。最佳条件为20%菊粉(w/v)、3%吐温80(w/v)和3% GO(w/v),其包封率高达82.63%,粒径为1154.60±28.85 nm。傅里叶变换红外光谱表明GO被包封在菊粉基质内部。我们的研究表明,喷雾干燥微胶囊中GO的吸湿性有所改善,范围为6.51至10.22 g H₂O/100 g干重。

补充信息

在线版本包含可在10.1007/s13197 - 024 - 05988 - 0获取的补充材料。

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