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Tailoring of structured hydroxypropyl methylcellulose-stabilized emulsions for encapsulation of nobiletin: modification of the oil and aqueous phases

机译:剪裁结构化羟丙基甲基纤维素稳定的乳液,用于包封Nobiletin:改性油和水相

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摘要

Hydroxypropyl methylcellulose (HPMC)-stabilized emulsions were produced and their structure was further modified by altering the oil (glycerol monolaurate, GML) and aqueous (whey protein concentrate, WPC) phases. Then, the encapsulation and release of nobiletin were evaluated. HPMC (3%) could efficiently stabilize the oil droplets with a particle size around 370 nm. When HPMC was the emulsifier, the stabilization time of nobiletin in the emulsion was prolonged, but its encapsulation amount was still maintained around 4.5 mg g(-1). Nobiletin crystals were found to adsorb on the interface of oil droplets. The addition of GML and WPC changed the microstructure of HPMC-stabilized emulsions. Both of them enhanced the encapsulation efficiency and storage stability of nobiletin. Nobiletin crystals became softer and shorter. After modification, nobiletin was stable for one week at a level of 7.5 mg g(-1). The bioaccessibility of nobiletin was modulated in the presence of GML and WPC. The results demonstrate that the structure of emulsion-based delivery systems affects the encapsulation and delivery of hydrophobic components.
机译:制备羟丙基甲基纤维素(HPMC) - 制备乳液,通过改变油(甘油单溴磺酸盐,GML)和水性(乳清蛋白浓缩物,WPC)相进一步改变它们的结构。然后,评估Nobiletin的包封和释放。 HPMC(3%)可以有效地稳定粒径约为370nm的油滴。当HPMC是乳化剂时,延长乳液中的Nobiletin的稳定时间,但其包封量仍保持约4.5mg(-1)。发现Nobiletin晶体吸附在油滴的界面上。添加GML和WPC改变了HPMC稳定乳液的微观结构。两者都增强了Nobiletin的封装效率和储存稳定性。 Nobiletin晶体变得更柔软,更短。在改性后,Nobiletin在7.5mg g(-1)的水平下稳定一周。在GML和WPC存在下,Nobiletin的生物可接为性被调节。结果表明,乳液的递送系统的结构影响疏水组分的封装和递送。

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    《Food & Function》 |2018年第7期|共8页
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  • 正文语种 eng
  • 中图分类 食品工业;
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