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首页> 外文期刊>European Journal of Lipid Science and Technology >beta-sitosterol Lipid Nano Carrier Based on Propolis Wax and Pomegranate Seed Oil: Effect of Thermal Processing, pH, and Ionic Strength on Stability and Structure
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beta-sitosterol Lipid Nano Carrier Based on Propolis Wax and Pomegranate Seed Oil: Effect of Thermal Processing, pH, and Ionic Strength on Stability and Structure

机译:基于蜂胶蜡和石榴籽油的β-谷甾醇脂纳米载体:热处理,pH和离子强度对稳定性和结构的影响

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摘要

The beta-sitosterol-loaded nanostructured lipid carrier (NLC) is formulated using propolis wax (PW) alone or in the mixture (1:1 w/w) with glyceryl behenate (GB), and pomegranate seed oil stabilized with Tween 80 and lecithin. The influence of thermal treatment (60-90 degrees C, pH 7, 20 min), pH (2, 4, 6, and 8) and ionic strength (0-200 mM NaCl, pH 7) on physical stability, structure, and beta-sitosterol degradation is evaluated. The NLCs are physically and chemically stable during heating at low temperatures (= 70 degrees C) while thermal treatment at 80-90 degrees C leads to an increase in size and a slight decrease in beta-sitosterol content. The particle size of PW and PW + GB NLCs increases from 96 and 105 nm at pH 7 to 108 and 114 nm at pH 2, respectively, which may limit NLC long-term stability in highly acidic products. On the other hand, there is no significant difference in particle size and PDI with respect to electrolyte concentration. The NLC does not undergo polymorphic transitions by changes in pH and ionic strength. However, crystallinity decreases with increasing electrolyte concentration which is further confirmed by differential scanning calorimetry results. The beta-sitosterol NLC relatively showed a suitable potential for industrial applications. Practical Applications: beta-sitosterol has many valuable physiological functions in humans which has made it an attractive nutraceutical ingredient for food fortifications. Nevertheless, incorporation of beta-sitosterol in food and beverages is rather challenging since it is almost insoluble in water and only slightly soluble in oils. NLC based on PW and PSO offer a promising means for delivery of beta-sitosterol to aqueous-based foods and developing functional health promoting products by virtue of supplementary health benefits in addition to those of beta-sitosterol. However, functionality and dispersibility of formulations could be affected by environmental stresses typically experienced by foods during production and storage. Thus, behavior of emulsions at different conditions should be examined. NLC with relatively good physical and chemical stability to thermal processing, pH, and salt can be created using Tween 80 and lecithin as interfacial coating and PW as lipid matrix which ensures the successful delivery of beta sitosterol to various food formats. Nanostructured lipid carriers made with propolis wax (PW) alone or in the mixture with glyceryl behenate (GB) and pomegranate seed oil and loaded with beta-sitosterol. Influence of environmental stresses typically encountered by food products on stability.
机译:β-谷甾醇溶胶加载的纳米结构脂质载体(NLC)用单独的蜂胶蜡(PW)配制,或者用甘油(GB)的混合物(1:1w / w)配制,用吐温80和卵磷脂稳定石榴籽油。热处理(60-90℃,pH7,20分钟),pH(2,4,6和8)和离子强度(0-200mM NaCl,pH7)的影响,物理稳定性,结构和评估β-谷甾醇降解。在低温下加热(& = 70℃)时,NLC在物理和化学稳定,同时在80-90℃的热处理导致尺寸的增加和β-谷甾醇含量的略微降低。 PW和PW + GB NLC的粒度分别在pH7至108和114nm处的96和105nm增加,分别在pH 2下增加,这可能限制高酸性产物中的NLC长期稳定性。另一方面,粒度和PDI相对于电解质浓度没有显着差异。 NLC不会通过pH和离子强度的变化进行多态转变。然而,结晶度随着电解质浓度的增加而降低,电解质浓度通过差示扫描量热法进一步证实。 Beta-sitosterol NLC相对显示了工业应用的合适潜力。实际应用:Beta-Sitterosol在人类中有许多有价值的生理功能,使其成为食品防御工事有吸引力的营养成分。然而,在食品和饮料中掺入β-谷甾醇是相当具有挑战性,因为它几乎不溶于水并且只略微溶于油脂。基于PW和PSO的NLC提供了有希望的手段,用于通过β-谷甾醇除了补充健康益处,通过补充健康益处递送β-梨蛋白酶和开发功能健康促进产品的促进产品。然而,制剂的功能和分散性可能受到生产和储存期间食品通常经历的环境压力的影响。因此,应检查不同条件下的乳液的行为。 NLC具有相对良好的物理和化学稳定性的热处理,pH和盐,可以使用吐温和卵磷脂作为界面涂层和PW作为脂质基质来创建,这确保了β谷甾醇的成功递送到各种食物格式。纳米结构脂质载体用蜂胶蜡(PW)单独制备,或用甘油肽(GB)和石榴种子油和β-谷物醇的混合物制成。食品常见于稳定性的环境应力的影响。

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