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首页> 外文期刊>Food Hydrocolloids >Tailoring zein nanoparticle functionality using biopolymer coatings: Impact on curcumin bioaccessibility and antioxidant capacity under simulated gastrointestinal conditions
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Tailoring zein nanoparticle functionality using biopolymer coatings: Impact on curcumin bioaccessibility and antioxidant capacity under simulated gastrointestinal conditions

机译:使用生物聚合物涂层定制玉米蛋白纳米颗粒的功能:在模拟胃肠道条件下对姜黄素生物可及性和抗氧化能力的影响

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Protein nanoparticles can be used to encapsulate, protect, and deliver hydrophobic bioactive agents however, they are often unstable to environmental stresses. In this study, the impact of electrostatic deposition of a biopolymer coating (alginate/gelatin) on the physicochemical and functional properties of curcumin-loaded zein nanoparticles was determined. The pH stability of the zein nanoparticles was greatly improved by the biopolymer coatings, with a 7:3 w/w alginate-to-gelatin ratio being the most effective at inhibiting particle aggregation from pH 3 to 7. The optimized biopolymer-coated nanoparticles remained stable to aggregation during long-term storage, and were resistant to heat treatment at 80 degrees C for up to 40 min in 10% aqueous sucrose solutions (pH 4.5). The in vitro bioaccessibility of curcumin was appreciably higher (22.4%) when it was encapsulated within biopolymer-coated zein nanoparticles than when it was not encapsulated (8%). This effect was mainly attributed to the ability of the nanoparticles to inhibit curcumin degradation and increase curcumin solubility within the simulated gastrointestinal tract (GIT). The in vitro antioxidant capacity of curcumin after exposure to the simulated GIT was also greatly improved by encapsulation within the nanoparticles, as demonstrated by much stronger ABTS(+) radical scavenging and ferric ion reducing power. These results suggest that biopolymer-coated zein nanoparticles may be an effective oral delivery system for curcumin that could be used in functional foods or beverages. (C) 2017 Elsevier Ltd. All rights reserved.
机译:蛋白质纳米颗粒可用于封装,保护和输送疏水性生物活性剂,但是它们通常对环境压力不稳定。在这项研究中,确定了生物聚合物涂层(藻酸盐/明胶)的静电沉积对姜黄素负载的玉米醇溶蛋白纳米粒子的理化和功能特性的影响。生物聚合物涂层极大地改善了玉米醇溶蛋白纳米颗粒的pH稳定性,藻酸盐与明胶的比率为7:3 w / w,最有效地抑制了pH从3到7的颗粒聚集。保留了优化的生物聚合物涂层纳米颗粒在长期储存过程中对聚集稳定,并且在10%的蔗糖水溶液(pH 4.5)中耐80℃下长达40分钟的热处理。当将姜黄素包裹在生物聚合物包衣的玉米醇溶蛋白纳米颗粒中时,其体外生物可及性要比未包裹时(<8%)高得多(22.4%)。该作用主要归因于纳米颗粒抑制姜黄素降解并增加姜黄素在模拟胃肠道(GIT)中的溶解度的能力。姜黄素暴露于模拟GIT后的体外抗氧化能力也通过封装在纳米颗粒中而大大提高,这表现为更强的ABTS(+)自由基清除能力和三价铁离子还原能力。这些结果表明,生物聚合物包衣的玉米醇溶蛋白纳米颗粒可能是姜黄素的有效口服递送系统,可用于功能性食品或饮料。 (C)2017 Elsevier Ltd.保留所有权利。

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