Wang Ping-Ping, Qin Xin-Sheng, Yang Qing-Yu, Luo Zhi-Gang, Xiao Zhi-Gang, Peng Xi-Chun
School of Food Science and Engineering, South China University of Technology , Guangzhou, Guangdong 510640, People's Republic of China.
College of Grain Science and Technology, Shenyang Normal University , Shenyang, Liaoning 110034, People's Republic of China.
J Agric Food Chem. 2017 Oct 4;65(39):8744-8753. doi: 10.1021/acs.jafc.7b03242. Epub 2017 Sep 25.
In this study, the preparation and structural properties of spiral dextrin (SD)/vitamin E and SD/soy isoflavone inclusion complexes were studied. SD was obtained from debranched normal maize starch using isoamylases. After fractionation using a novel method of gradient ethanol precipitation, SD was separated into different fractions, among which SD-40 was found to be the optimal host molecule to prepare SD inclusion complexes with vitamin E or soy isoflavone. X-ray diffraction (XRD) and C cross-polarization magic angle spinning nuclear magnetic resonance (NMR) suggested that the crystalline structures of SD-40/vitamin E and SD-40/soy isoflavone were V6II and V6III types, respectively. Small-angle X-ray scattering revealed that the SD-40/vitamin E inclusion complex formed a tighter and more compact crystallite than the SD-40/soy isoflavone inclusion complex. Furthermore, the connection structures of inclusion complexes were investigated by two-dimensional nuclear Overhauser effect spectroscopy NMR, indicating that part of vitamin E with an alkyl chain was encapsulated in the helix cavity of SD-40, whereas the aromatic ring B of the soy isoflavone molecule was complexed by the helix cavity and screw of SD.
本研究对螺旋糊精(SD)/维生素E和SD/大豆异黄酮包合物的制备及结构性质进行了研究。SD由脱支的普通玉米淀粉通过异淀粉酶获得。采用新型梯度乙醇沉淀法分级分离后,SD被分成不同级分,其中SD - 40被发现是制备与维生素E或大豆异黄酮的SD包合物的最佳主体分子。X射线衍射(XRD)和碳交叉极化魔角旋转核磁共振(NMR)表明,SD - 40/维生素E和SD - 40/大豆异黄酮的晶体结构分别为V6II型和V6III型。小角X射线散射显示,SD - 40/维生素E包合物形成的微晶比SD - 40/大豆异黄酮包合物更紧密、更致密。此外,通过二维核Overhauser效应光谱核磁共振研究了包合物的连接结构,表明部分带有烷基链的维生素E被包封在SD - 40的螺旋腔内,而大豆异黄酮分子的芳香环B则与SD的螺旋腔和螺旋结合。