College of Food Science and Engineering, South China University of Technology, 381 Wushan Road, Guangzhou 510640, China.
Guangdong Province Key Laboratory for Green Processing of Natural Products and Product Safety, 381 Wushan Road, Guangzhou 510640, China.
Molecules. 2018 Feb 23;23(2):495. doi: 10.3390/molecules23020495.
β-carotene is a lipophilic micronutrient that is considered beneficial to human health. However, there are some limitations in utilizing β-carotene in functional foods or dietary supplements currently because of its poor water dispersibility and chemical stability. A new type of β-carotene bilayer emulsion delivery system was prepared by a layer-by-layer electrostatic deposition technique, for which were chosen bovine serum albumin (BSA) as the inner emulsifier and Arabic gum (GA) as the outer emulsifier. The physicochemical properties of bilayer emulsions were mainly characterized by droplet size distribution, zeta potential, rheological behavior, Creaming Index (CI), and encapsulation ratio of β-carotene. Besides this, the effects of processing conditions (pH, thermal treatment, UV radiation, strong oxidant) and storage time on the chemical stability of bilayer emulsions were also evaluated. The bilayer emulsion had a small droplet size (221.27 ± 5.17 nm) and distribution (PDI = 0.23 ± 0.02), strong zeta potential (-30.37 ± 0.71 mV), good rheological behavior (with the highest viscosity that could reduce the possibility of flocculation) and physical stability (CI = 0), high β-carotene encapsulation ratio (94.35 ± 0.71%), and low interfacial tension (40.81 ± 0.86 mN/m). It also obtained better chemical stability under different environmental stresses when compared with monolayer emulsions studied, because it had a dense and thick bilayer structure.
β-胡萝卜素是一种亲脂性微量营养素,被认为对人体健康有益。然而,由于其较差的水分分散性和化学稳定性,目前在功能性食品或膳食补充剂中利用β-胡萝卜素存在一些局限性。通过层层静电沉积技术制备了一种新型β-胡萝卜素双层乳液递送系统,选择牛血清白蛋白(BSA)作为内层乳化剂,阿拉伯胶(GA)作为外层乳化剂。双层乳液的理化性质主要通过粒径分布、Zeta 电位、流变行为、Creaming Index(CI)和β-胡萝卜素的包封率来表征。此外,还评估了加工条件(pH 值、热处理、UV 辐射、强氧化剂)和储存时间对双层乳液化学稳定性的影响。双层乳液具有较小的粒径(221.27±5.17nm)和分布(PDI=0.23±0.02),较强的 Zeta 电位(-30.37±0.71mV),良好的流变行为(具有最高的粘度,可降低絮凝的可能性)和物理稳定性(CI=0),高β-胡萝卜素包封率(94.35±0.71%)和低界面张力(40.81±0.86mN/m)。与所研究的单层乳液相比,它在不同环境压力下具有更好的化学稳定性,因为它具有致密且厚实的双层结构。