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Stability, bioactivity, and bioaccessibility of fucoxanthin in zein-caseinate composite nanoparticles fabricated at neutral pH by antisolvent precipitation

机译:在中性pH下通过反溶剂沉淀法制备的玉米黄质-酪蛋白酸酯复合纳米颗粒中岩藻黄质的稳定性,生物活性和生物可及性

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In this study, caseinate-stabilized zein particles (zein-Cas) were developed at neutral pH to encapsulate fucoxanthin (FX) using a simple antisolvent precipitation method. Fluorescence results indicated that zein or Cas interact with fucoxanthin by hydrophobic contacts with a binding constant magnitude of 10(5)M(-1). The presence of proteins resulted in altering the FX precipitates from irregular shape to spherical shape at higher zein proportions, as confirmed by transmission electron microscopy. The average particle size of FX-loaded zein-Cas particles was below 150 nm (100 to 130 nm) with negative surface charge (-30 to -35 mV). The encapsulated FX showed higher stability, antioxidant activity and antiproliferative activity than free FX. Besides, the bioaccessibility of encapsulated FX was appreciably higher than it was not encapsulated. These results demonstrated that FX-loaded zein-Cas nanoparticles could enable the application of FX in functional foods and beverages, as well as in pharmaceutical products.
机译:在这项研究中,酪蛋白稳定的玉米醇溶蛋白颗粒(zein-Cas)在中性pH下开发,以使用简单的抗溶剂沉淀方法包封岩藻黄质(FX)。荧光结果表明,玉米醇溶蛋白或Cas通过疏水接触与岩藻黄质相互作用,其结合常数为10(5)M(-1)。蛋白质的存在导致以较高的玉米醇溶蛋白比例将FX沉淀物从不规则形状改变为球形,如通过透射电子显微镜所证实的。负载FX的玉米醇溶蛋白-Cas颗粒的平均粒度低于150nm(100至130nm),具有负表面电荷(-30至-35mV)。包封的FX比游离FX具有更高的稳定性,抗氧化活性和抗增殖活性。此外,封装的FX的生物可及性明显高于未封装的。这些结果表明,加载FX的玉米醇溶蛋白-Cas纳米颗粒可以使FX在功能性食品和饮料以及医药产品中的应用。

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