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Encapsulation of Vitamin A Palmitate in Nanostructured Lipid Carrier (NLC)-Effect of Surfactant Concentration on the Formulation Properties

机译:维生素A棕榈酸酯在纳米结构脂质载体(NLC)中的包封-表面活性剂浓度对制剂性能的影响

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Purpose: Nanostructured lipid carrier (NLC) is a useful delivery system with high capacity for bioactive loading, and suitable stability for fortification of foods and beverages. The objective of the present work is to prepare vitamin A palmitate (vitA)-loaded NLC and to investigate surfactant concentration effect on physicochemical properties of prepared formulation. Methods: VitA-loaded NLC was prepared by hot homogenization method. Preciol as solid lipid, Octyloctanoate as liquid oil, and Poloxamer as surfactant were used to prepare the formulation. The effect of different concentrations of Poloxamer on particle size, particle size distribution, encapsulation efficiency and stability of vitA during storage were investigated. Fourier transform infrared spectra (FTIR) was exploited to study the possible bioactive-lipid complex formation. Results: NLCs stabilized with 6% Poloxamer showed significantly lower particle size and particle size distribution. The encapsulation efficiency of this formulation was 98.5% and it was stable during the storage at 25°C for two months. Conclusion: This study suggests that surfactant significantly influences the final product properties. Our findings may pave the way of researchers to focus on fortifying the beverages with various lipophilic nutraceuticals.
机译:目的:纳米结构脂质载体(NLC)是一种有用的递送系统,具有高的生物活性负载能力,并具有稳定的食品和饮料强化能力。本工作的目的是制备负载维生素A棕榈酸酯(vitA)的NLC,并研究表面活性剂浓度对制备制剂理化性质的影响。方法:采用热均质法制备含VitA的NLC。用Preciol作为固体脂质,辛基辛酸酯作为液体油,和泊洛沙姆作为表面活性剂来制备制剂。研究了不同浓度泊洛沙姆对储存过程中vitA的粒径,粒径分布,包封效率和稳定性的影响。傅里叶变换红外光谱(FTIR)被用来研究可能的生物活性脂质复合物的形成。结果:用6%泊洛沙姆稳定的NLC显示出明显更低的粒径和粒径分布。该制剂的包封效率为98.5%,并且在25℃下储存两个月期间是稳定的。结论:这项研究表明表面活性剂会显着影响最终产品的性能。我们的发现可能为研究人员专注于用各种亲脂性营养食品强化饮料铺平了道路。

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