College of Chemistry and Environmental Engineering, Shenzhen University, Shenzhen 518060, China.
Western Regional Research Center, ARS, USDA, Albany, CA 94710, United States.
Food Chem. 2018 Sep 30;261:283-291. doi: 10.1016/j.foodchem.2018.04.055. Epub 2018 Apr 17.
In this study, bovine serum albumin (BSA)-caffeic acid (CA) conjugate was prepared with free radical-induced grafting method. The CA to BSA ratio of the conjugate was 115.7 mg/g. In vitro antioxidant activity assays suggested that BSA-CA conjugates had stronger antioxidant activity than BSA. Resveratrol-loaded zein encapsulated with BSA and BSA-CA conjugate core-shell nanoparticles were prepared with antisolvent method. Particle sizes were 206.3 nm, and 217.2 nm for BSA and BSA-CA, respectively. The encapsulation efficiencies (EEs) were 85.3% and 86.5% for zein-BSA and zein-BSA-CA nanoparticles, respectively. SEM results indicated that both nanoparticles were spherical with mean diameter approximately 200 nm and smooth surfaces. Both thermal and UV light stability of resveratrol was significantly improved after nanoencapsulation. BSA-CA conjugate showed remarkably greater protection than BSA against resveratrol degradation. Cellular antioxidant activity (CAA) study confirmed that resveratrol in both zein-BSA and zein-BSA-CA nanoparticles had significant higher antioxidant activities than resveratrol alone.
在这项研究中,采用自由基诱导接枝法制备了牛血清白蛋白(BSA)-咖啡酸(CA)缀合物。缀合物中 CA 与 BSA 的比例为 115.7mg/g。体外抗氧化活性测定表明,BSA-CA 缀合物比 BSA 具有更强的抗氧化活性。采用抗溶剂法制备了载白藜芦醇的玉米醇溶蛋白包被 BSA 和 BSA-CA 核壳纳米粒子。粒子的粒径分别为 206.3nm 和 217.2nm。BSA 和 BSA-CA 的包封效率(EE)分别为 85.3%和 86.5%。SEM 结果表明,两种纳米粒子均为球形,平均直径约为 200nm,表面光滑。纳米封装后,白藜芦醇的热稳定性和紫外光稳定性均得到显著提高。与 BSA 相比,BSA-CA 缀合物对 RES 降解具有显著更好的保护作用。细胞抗氧化活性(CAA)研究证实,玉米醇溶蛋白- BSA 和玉米醇溶蛋白-BSA-CA 纳米粒子中的 RES 比单独的 RES 具有更高的抗氧化活性。