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首页> 外文期刊>Food Hydrocolloids >Kenaf (Hibiscus cannabinus L.) seed oil-in-water Pickering nanoemulsions stabilised by mixture of sodium caseinate, Tween 20 and beta-cyclodextrin
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Kenaf (Hibiscus cannabinus L.) seed oil-in-water Pickering nanoemulsions stabilised by mixture of sodium caseinate, Tween 20 and beta-cyclodextrin

机译:酪蛋白酸钠,吐温20和β-环糊精的混合物稳定的Kenaf(Hibiscus cannabinus L.)种子水包油Pickering纳米乳剂

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The limit application of functional kenaf (Hibiscus cannabinus L.) seed oil in food and pharmaceutical industry owing to the poor water solubility and low storage stability can be overcome by the development of kenaf seed oil-in-water Pickering nanoemulsions. In this study, oil-in-water Pickering nanoemulsions were produced to investigate its stability by optimising emulsifier mixtures, namely sodium caseinate (SC), Tween 20 (120) and beta-cyclodextrin (beta-CD). The interaction effects of SC and 170 on the formation of Pickering nanoemulsions with beta-CD was studied and found synergistic effect among them that enhanced the stability of Pickering nanoemulsions. The optimum proportion of emulsifier mixtures obtained by employing simplex centroid mixture design was found to be 57.9% (w/w) SC, 27.6% (w/w) T20, and 14.5% (w/w) beta-CD, which produced Pickering nanoemulsion with mean particle size of 155.53 nm, PDI of 0.07 and zeta-potential of 46.67 mV. These experimental values were in accordance with the predicted value, indicating the adequacy of the fitted models. The mixture design was found to be a valuable tool to optimise and study the interaction effects of different components for the development of stable Pickering nanoemulsions. (C) 2015 Elsevier Ltd. All rights reserved.
机译:洋麻籽水包油Pickering纳米乳液的开发可以克服由于水溶性差和储藏稳定性差而导致的功能性洋麻(Hibiscus cannabinus L.)种子油在食品和制药工业中的极限应用。在这项研究中,生产了水包油Pickering纳米乳液,以通过优化乳化剂混合物(酪蛋白酸钠(SC),吐温20(120)和β-环糊精(β-CD))来研究其稳定性。研究了SC和170对β-CD形成Pickering纳米乳液的相互作用,发现它们之间的协同作用增强了Pickering纳米乳液的稳定性。通过采用单纯形质心混合物设计获得的乳化剂混合物的最佳比例为57.9%(w / w)SC,27.6%(w / w)T20和14.5%(w / w)β-CD,这产生了Pickering纳米乳液,平均粒径为155.53 nm,PDI为0.07,ζ电位为46.67 mV。这些实验值与预测值一致,表明拟合模型的适当性。混合物设计被发现是优化和研究不同组分相互作用对开发稳定的Pickering纳米乳液的有价值的工具。 (C)2015 Elsevier Ltd.保留所有权利。

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