胶囊化α-生育酚醋酸酯的制备及其理化生物学性能研究

A. Iskineyeva, A. Mustafaeva, G. Zamaratskaya, S. Fazylov, I. Pustolaikina, O. Nurkenov, A. Sarsenbekova, Т. Seilkhanov, R. Bakirova
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引用次数: 0

摘要

本文讨论了用水溶性低聚糖(环糊精)制备胶囊化维生素E的研究结果。采用共沉淀法和微波活化法制备了β-CD与α-生育酚包合物。在微波条件下合成维生素E与环糊精包合物的收率最高。采用MM+法对α-生育酚乙酸酯与β-环糊精按1:1、1:2、1:3和1:4的比例包合物进行分子模拟。基于半经验PM3计算,在不考虑环境影响的情况下,估计了所研究系统的总能量。本文报道了α-生育酚醋酸酯与β-环糊精包合物的结构研究。所得到的“主-主”包合物的表面形貌用扫描电子显微镜进行了描述。通过FT-IR、1H和13C NMR数据表征了包合物的光谱性质。通过对β-CD以β-CD: VE包合物形式在自由和束缚状态下的1H NMR和13C NMR谱的研究,可以揭示宿主分子核(±∆δ) 1H和13C信号在弱场和强场区域的位移。实验结果证实了α-生育酚醋酸酯与β-环糊精在不同比例下形成包合物的可能性。本文介绍了胶囊化α-生育酚醋酸酯对食品肉制品安全性影响的研究资料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Preparation of encapsulated α-tocopherol acetate and study of its physico-chemical and biological properties
The article discusses the results of research for obtaining encapsulated vitamin E using a water-soluble oligosaccharide (cyclodextrin). The inclusion complexes of β-CD with α-tocopherol were obtained in an aqueousalcoholic medium by coprecipitation and microwave activation. The highest yields of target clathrate inclusion complexes of vitamin E with cyclodextrin were obtained under microwave synthesis conditions. Molecular modeling of inclusion complexes of α-tocopherol acetate with β-cyclodextrin in the ratios of 1:1, 1:2, 1:3, and 1:4 was performed using the MM+ method. Based on semi-empirical PM3 calculations, without taking into account the influence of the environment, the total energy of the systems under study was estimated. Data on the study of the structure of the clathrate complex of α-tocopherol acetate with β-cyclodextrin was presented. The surface morphology of the resulting “guest-host” clathrate complex was described using a scanning electron microscope. The spectral properties of the inclusion complex were characterized by FT-IR and 1H and 13C NMR spectroscopy data. The study of the 1H NMR and 13C NMR spectra of β-CD in the free and bound state in the form of the β-CD: VE clathrate made it possible to reveal the displacements of the signals of the nuclei (± ∆δ) 1H and 13C of the host molecule both in the region of weak and strong fields. The experimental results confirmed the possibility of the formation of inclusion complexes of α-tocopherol acetate with β-cyclodextrin at various ratios. The data on the study of the effect of encapsulated α-tocopherol acetate on the safety of food meat products was presented.
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