Phunpee Sarunya, Ruktanonchai Uracha Rangsadthong, Yoshii Hidefumi, Assabumrungrat Suttichai, Soottitantawat Apinan
a Faculty of Engineering, Department of Chemical Engineering , Chulalongkorn University , Bangkok , Thailand.
b National Nanotechnology Center, National Science and Technology Development Agency , Patumthani , Thailand.
Biosci Biotechnol Biochem. 2017 Apr;81(4):718-723. doi: 10.1080/09168451.2016.1277942. Epub 2017 Jan 17.
Inclusion of the two isomers of citral (E-citral and Z-citral), components of lemongrass oil, was investigated within the confines of various cyclodextrin (α-CD, β-CD and γ-CD) host molecules. Aqueous complex formation constants for E-citral with α-CD, β-CD and γ-CD were determined to be 123, 185, and 204 L/mol, respectively, whereas Z-citral exhibited stronger affinities (157, 206, and 253 L/mol, respectively). The binding trend γ-CD > β-CD > α-CD is a reflection of the more favorable geometrical accommodation of the citral isomers with increasing cavity size. Encapsulation of lemongrass oil within CDs was undertaken through shaking citral:CD (1:1, 1.5:1, and 2:1 molar ratio) mixtures followed by spray drying. Maximum citral retention occurred at a 1:1 molar ratio with β-CD and α-CD demonstrating the highest levels of total E-citral and Z-citral retention, respectively. Furthermore, the β-CD complex demonstrated the slowest release rate of all inclusion complex powders.
在各种环糊精(α-环糊精、β-环糊精和γ-环糊精)主体分子范围内,研究了柠檬草油成分柠檬醛的两种异构体(反式柠檬醛和顺式柠檬醛)。反式柠檬醛与α-环糊精、β-环糊精和γ-环糊精形成水相配合物的稳定常数分别测定为123、185和204 L/mol,而顺式柠檬醛表现出更强的亲和力(分别为157、206和253 L/mol)。结合趋势γ-环糊精>β-环糊精>α-环糊精反映出随着腔尺寸增加,柠檬醛异构体在几何结构上的容纳更有利。通过振荡柠檬醛与环糊精(1:1、1.5:1和2:1摩尔比)混合物然后喷雾干燥,将柠檬草油包封在环糊精中。与β-环糊精以1:1摩尔比时柠檬醛保留量最大,而α-环糊精分别显示出反式柠檬醛和顺式柠檬醛总保留量的最高水平。此外,β-环糊精配合物在所有包合复合物粉末中表现出最慢的释放速率。