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Impact of chitosan and oregano extract on the physicochemical properties of microencapsulated fish oil stored at different temperature

机译:壳聚糖和牛肝提取物对不同温度储存微胶囊化鱼油物理化学性质的影响

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摘要

Fish oil is an excellent source of omega-3 fatty acids and is easily susceptible to oxidation. Microencapsulation is a commonly employed technique to protect fish oil against oxidation. In the present study, the potential of chitosan in combination with bovine gelatin and maltodextrin as wall material for microencapsulation of fish oil by spray drying was evaluated. To improve the oxidative stability of the fish oil microencapsulates, oregano (Origanum vulgare L) extract was added at 0.50 g/100 g of emulsion. The spray-dried powder showed a moisture content of 2.8 – 3.2 g/100 g of spray-dried powder. The powder contained spherical microparticles with different sizes as indicated by scanning electron microscope images. Encapsulation efficiency of microencapsulates ranged between 68.94% and 81.88%. Differential scanning calorimetry and Fourier-transformed infrared spectroscopy analysis of microencapsulates revealed the possible structural stabilization of core and wall material. The oxidative stability of fish oil microencapsulates were monitored under three different temperature (60°C, 28 ± 2°C, and 4°C). Incorporation of oregano extract minimized the generation of secondary and tertiary oxidation products as indicated by lower peroxide value and thiobarbituric acid reactive substance values compared to control. Overall, the results suggested that combination of chitosan along with bovine gelatin and maltodextrin as wall material improved the surface morphology of the microparticle and encapsulation efficiency, whereas incorporation of oregano extract in fish oil before spray drying enhanced the oxidative stability during storage.
机译:鱼油是欧米茄3脂肪酸的优异来源,很容易氧化。微胶囊化是一种普遍采用的技术,用于保护鱼油免受氧化。在本研究中,评价壳聚糖与牛明胶和麦芽糖酚作为通过喷雾干燥微胶质料的壁材料的壳体与喷雾干燥的壁材料。为了改善鱼油微胶囊的氧化稳定性,加入0.50g / 100g乳液的牛至(Origanum vulgare L)提取物。喷雾干燥的粉末显示出2.8-3.2g / 100g的喷雾干燥粉末的水分含量。粉末含有不同尺寸的球形微粒,如扫描电子显微镜图像所示。微胶囊的封装效率范围为68.94%和81.88%。微胶囊化的差分扫描量热法和傅里叶变换的红外光谱分析显示了芯和壁材料的可能结构稳定。在三个不同的温度(60℃,28±2℃和4℃)下监测鱼油微胶质磺化物的氧化稳定性。牛至提取物的掺入最小化了与对照相比少氧化物值和硫酰比酸反应性物质值下降的二次和叔氧化产物的产生。总体而言,结果表明,壳聚糖与牛明胶和麦芽糖酚作为壁材料的组合改善了微粒和包封效率的表面形态,而在喷雾干燥前掺入鱼油中的牛至提取物,增强了储存过程中的氧化稳定性。

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