Ramos-Hernández Jorge A, Ragazzo-Sánchez Juan A, Calderón-Santoyo Montserrat, Ortiz-Basurto Rosa I, Prieto Cristina, Lagaron Jose M
Laboratorio Integral de Investigación en Alimentos, Tecnológico Nacional de México/Instituto Tecnológico de Tepic, Av. Tecnológico 2595, C.P. Tepic 63175, Nayarit, Mexico.
Novel Materials and Nanotechnology Group, IATA-CSIC, Calle Catedrático Agustín Escardino Benlloch 7, 46980 Paterna, Spain.
Nanomaterials (Basel). 2018 Oct 23;8(11):868. doi: 10.3390/nano8110868.
High degree of polymerization Agave fructans (HDPAF) are presented as a novel encapsulating material. Electrospraying coating (EC) was selected as the encapsulation technique and β-carotene as the model bioactive compound. For direct electrospraying, two encapsulation methodologies (solution and emulsion) were proposed to find the formulation which provided a suitable particle morphology and an adequate concentration of β-carotene encapsulated in the particles to provide a protective effect of β-carotene by the nanocapsules. Scanning electron microscopy (SEM) images showed spherical particles with sizes ranging from 440 nm to 880 nm depending on the concentration of HDPAF and processing parameters. FTIR analysis confirmed the interaction and encapsulation of β-carotene with HDPAF. The thermal stability of β-carotene encapsulated in HDPAF was evidenced by thermogravimetric analysis (TGA). The study showed that β-carotene encapsulated in HDPAF by the EC method remained stable for up to 50 h of exposure to ultraviolet (UV) light. Therefore, HDPAF is a viable option to formulate nanocapsules as a new encapsulating material. In addition, EC allowed for increases in the ratio of β-carotene:polymer, as well as its photostability.
高聚合度龙舌兰果聚糖(HDPAF)被作为一种新型包封材料提出。选择电喷雾包衣(EC)作为包封技术,并选用β-胡萝卜素作为模型生物活性化合物。对于直接电喷雾,提出了两种包封方法(溶液法和乳液法),以找到能提供合适颗粒形态以及颗粒中β-胡萝卜素适当浓度的配方,从而使纳米胶囊对β-胡萝卜素起到保护作用。扫描电子显微镜(SEM)图像显示,根据HDPAF的浓度和加工参数,颗粒呈球形,尺寸范围为440纳米至880纳米。傅里叶变换红外光谱(FTIR)分析证实了β-胡萝卜素与HDPAF之间的相互作用和包封情况。热重分析(TGA)证明了包封在HDPAF中的β-胡萝卜素的热稳定性。该研究表明,通过EC方法包封在HDPAF中的β-胡萝卜素在暴露于紫外线(UV)下长达50小时仍保持稳定。因此,HDPAF作为一种新型包封材料,是制备纳米胶囊的可行选择。此外,EC使得β-胡萝卜素与聚合物的比例增加,同时提高了其光稳定性。