B族维生素微胶囊的制备及其缓释动力学研究
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河北省现代农业产业技术体系蔬菜产业创新团队建设项目(HBCT2018030208)


Preparation of B-Vitamins Microcapsules and Studies on Its Slow-Release Kinetics
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    摘要:

    B族维生素在粮食中较为缺乏且易损失,它是人体不能合成的营养素。采用微胶囊包埋技术,以"7+1"强化面粉中规定添加的4种B族维生素——烟酰胺、叶酸、维生素B1、维生素B2为芯材,以明胶和羧甲基纤维素钠(CMC)为壁材,采用真空冷冻干燥技术制备混合B族维生素微胶囊,采用高效液相色谱法测定其包埋率。通过单因素试验和响应面法建立二次回归实际方程模型,获得制备混合B族维生素微胶囊的最佳工艺条件为:壁材质量百分浓度为2%,壁芯比2.41 ∶ 1,壁材比1.75 ∶ 1,在此工艺条件下制得的微胶囊包埋率为88.81%。扫描电镜结果表明:喷雾干燥比真空冷冻干燥具有更好的均一性和完整性,然而其表面凹陷和粘连作用较严重。缓释动力学试验表明:微胶囊对维生素具有一定的缓释作用,在胃液中的释放速度小于在肠液中的释放速度,且均遵循一级动力学模型,表明此工艺形成了较为稳定的多孔机制的水溶性微胶囊。

    Abstract:

    B Vitamins are relatively deficient in food and loss vulnerably, they are nutrients that the human body cannot synthesize. Microcapsule embedding technology was used in this experiment, niacinamide, folic acid, vitamin B1 and vitamin B2 what is ingredients specified in the‘7+1’ fortified flour as core materiasl, gelatin and sodium carboxymethyl cellulose(CMC) as wall materials, mixed B vitamins microcapsules were prepared by vacuum freeze-drying. The embedding rate was determined by HPLC. The optimal technological conditions for the preparation of mixed B vitamins microcapsules were obtained by establishing a quadratic regression equation model by single factor test and response surface method: the concentration of wall material is 2%, the proportion of core wall is 2.41, proportion of wall is 1.75 ∶ 1, the embedding rate of microcapsule was 88.81%. Scanning electron microscope results show that spray drying has better uniformity and integrity than vacuum freeze drying, but the sum and adhesion of surface are more serious. The experimental results of slow-release kinetics show that microcapsules have certain slow-release effects on vitamins, the rate of release in gastric juice is less than that in intestinal juice, and they all follow the first-order kinetic model, so the water-soluble microcapsules with stable porous mechanism have been formed.

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于文龙;刘卫华;章丽;师仁丽;王向红. B族维生素微胶囊的制备及其缓释动力学研究[J].中国食品学报,2019,19(12):122-132

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  • 在线发布日期: 2020-01-09
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