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Zein-CMC-PEG Multiple Nanocolloidal Systems as a Novel Approach for Nutra-Pharmaceutical Applications

机译:玉米蛋白-CMC-PEG多种纳米胶体系统作为一种新的药物应用方法

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摘要

>Purpose: Hydrophobic nutraceuticals are suffering from water solubility and physicochemical stabilities once administered to the body or food matrixes. The present study depicts the successful formulation of a zein-carboxymethyl cellulose (CMC) complex to stabilize a water in oil (W/O) emulsion to protect them from environmental and gastrointestinal conditions. The formulated water in oil in water (W/O/W) system was used for nanoencapsulating of hydrophobic nutraceutical, rutin, via protein-polysaccharide complexes. >Methods: Zein nano particles smaller than 100 nm were produced using poly ethylene glycol (PEG 400) and Tween 80, which eliminates the use of ethanolic solutions in preparation of zein nanoparticles (ZN). CMC was then added to the ZN under magnetic stirrer to provide zein-CMC complex. A concentration of 20% CMC showed the smallest particle size (<100 nm). Rutin was dispersed in water in oil in water (W/O/W) emulsion stabilized by zein-CMC complex. A set of experiments such as encapsulation efficiency (EE%), encapsulation stability (ES%), and releasing rate of rutin were measured during 30 days of storage at 4°C. >Results: Results showed that, produced multiple emulsion prepared with lower concentrations of Tween 80 (0.5%), ethanol: PEG: water ratio of 0:80:20 showed smaller size (89.8±4.2 nm). ES% at pH values of 1.2, 6.8, and 7.4 were 86.63±6.19, 91.54±3.89, and 97.13±2.39 respectively, indicating high pH tolerability of formulated W/O/W emulsions. >Conclusion: These findings could pave a new approach in stabilizing W/O/W emulsions for encapsulating and controlling the release of water insoluble nutraceuticals/drugs.
机译:>目的:疏水性保健食品一旦施用于人体或食物基质,就会具有水溶性和理化稳定性。本研究描述了玉米醇溶蛋白-羧甲基纤维素(CMC)复合物的成功配方,该复合物稳定了油包水(W / O)乳液,以保护它们免受环境和胃肠道疾病的影响。配制的水包油水(W / O / W)系统用于通过蛋白质-多糖复合物对疏水性保健芦丁进行纳米封装。 >方法:使用聚乙二醇(PEG 400)和吐温80生产小于100 nm的玉米醇溶蛋白纳米颗粒,从而无需在玉米醇溶蛋白纳米颗粒(ZN)的制备中使用乙醇溶液。然后在磁力搅拌器下将CMC添加到ZN中以提供玉米醇溶蛋白-CMC复合物。浓度为20%的CMC显示出最小的粒径(<100 nm)。将芦丁分散在通过玉米蛋白-CMC复合物稳定的水包油型水(W / O / W)乳液中。在4°C下储存30天的过程中,进行了一系列实验,例如包封效率(EE%),包封稳定性(ES%)和芦丁释放速率。 >结果:结果表明,以较低的吐温80(0.5%)浓度制备的多重乳液,乙醇:PEG:水比为0:80:20显示较小的尺寸(89.8±4.2 nm)。在pH值为1.2、6.8和7.4时的ES%分别为86.63±6.19、91.54±3.89和97.13±2.39,表明配制的W / O / W乳液的高pH耐受性。 >结论:这些发现可能为稳定W / O / W乳状液以封装和控制水不溶性营养保健品/药物的释放铺平了新途径。

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