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首页> 外文期刊>LWT-Food Science & Technology >Fabrication and characterization of zein/tea saponin composite nanoparticles as delivery vehicles of lutein
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Fabrication and characterization of zein/tea saponin composite nanoparticles as delivery vehicles of lutein

机译:玉米蛋白/茶皂苷复合纳米粒子的制备和表征作为叶黄素的递送载体

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摘要

The application of lutein hampers due to its environmental instability, poor water solubility and bioaccessibility. The goal of this paper was to overcome these challenges by fabricating zein/tea saponin nanoparticles act as the vehicles of lutein (ZTSLNPs). The optimized encapsulation efficiency of ZTSLNPs was 92.91%, while the loading capacity was 1.19%. The ZTSLNPs were smooth spherical structures with mean particle size of 213 nm and negative zeta-potential. Electrostatic interactions, hydrophobic interactions, and hydrogen bonding were the main forces to form ZTSLNPs. The encapsulated lutein in ZTSLNPs was amorphous. The secondary structure of zein was changed by incorporating lutein or tea saponin. ZTSLNPs showed great stability at pH 4.0-9.0, and exhibited excellent ionic strength stability and thermal stability. Meanwhile, the ZTSLNPs effectively reduced the decomposition of lutein during 15 days storage. Furthermore, ZTSLNPs showed excellent redispersibility. Besides, the water solubility and bioaccessibility of lutein were improved by ZTSLNPs. These findings indicated that the vehicle designed in our work would be a promising strategy to improving the application of hydrophobic functional factor.
机译:叶黄素流布由于其环境不稳定,水溶解度差和生物可接受性的应用。本文的目标是通过制造玉米蛋白/茶皂苷纳米粒子作为叶黄素(ZTSLNPS)的载体来克服这些挑战。 ZTSLNP的优化封装效率为92.91%,而负载能力为1.19%。 ZTSLNPS是平滑球形结构,平均粒径为213nm和阴性ζ电位。静电相互作用,疏水相互作用和氢键是形成ZTSLNP的主要力。 ZTSLNPS中的包封叶黄素是无定形的。通过掺入叶黄素或茶叶改变玉米醇醇的二次结构。 ZTSLNPS在pH 4.0-9.0时显示出具有很大的稳定性,并且表现出优异的离子强度稳定性和热稳定性。同时,ZTSLNPS在15天内有效地降低了叶黄素的分解。此外,ZTSLNPS显示出优异的重新分散性。此外,通过ZTSLNPS改善了叶黄素的水溶性和生物可接受性。这些调查结果表明,在我们的工作中设计的车辆将是改善疏水性功能因素的应用的有希望的策略。

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