Xia Shuqin, Xu Shiying, Zhang Xiaoming, Zhong Fang
School of Food Science and Technology, Southern Yangtze University, Wuxi, 214036, People's Republic of China.
J Phys Chem B. 2007 Mar 8;111(9):2200-7. doi: 10.1021/jp066130x. Epub 2007 Feb 9.
Coenzyme Q(10) (CoQ(10)) is incorporated in nanoliposomes composed of egg yolk phospholipid, cholesterol, and Tween 80. Atomic force microscopy, performed to characterize vesicle surface topology, shows some visible influence of CoQ(10) on the nanoliposomal structure. CoQ(10) incorporation can suppress the increase of the z-average diameter of nanoliposomes during storage for 8 months at 4 degrees C. The liposomal lipid peroxidation caused by Fe(III)/ascorbate is also significantly inhibited. Perturbation of acyl chain motion of lipids due to the presence of CoQ(10) in the bilayer is examined by fluorescence probe diphenyl-hexatriene and Raman spectroscopy. Fluorescence probe studies indicate that CoQ(10) incorporation results in the microviscosity increase of nanoliposomes. The steric structure of nanoliposomes reflected by Raman spectroscopy changes obviously and shows CoQ(10) content dependency. The order parameters for the lateral interaction between chains increase. The trans conformation decrease and the gauche conformation increase as the weight contents of CoQ(10) incorporation are at 1%, 5%, 10%, and 32.5%. However, the order parameters for the longitudinal interaction in chains was higher than that of pure nanoliposomes as the weight content of CoQ(10) is at 25%. Results suggest that CoQ(10)might intercalate between lipid molecules and perturb the bilayer structure.
辅酶Q(10)(CoQ(10))被包裹于由蛋黄磷脂、胆固醇和吐温80组成的纳米脂质体中。通过原子力显微镜对囊泡表面拓扑结构进行表征,结果显示CoQ(10)对纳米脂质体结构有一定可见影响。CoQ(10)的包封可抑制纳米脂质体在4℃储存8个月期间z平均直径的增加。由Fe(III)/抗坏血酸引起的脂质体脂质过氧化也受到显著抑制。通过荧光探针二苯基己三烯和拉曼光谱研究了双层中CoQ(10)的存在对脂质酰基链运动的扰动。荧光探针研究表明,CoQ(10)的包封导致纳米脂质体微粘度增加。拉曼光谱反映的纳米脂质体空间结构明显变化,并显示出对CoQ(10)含量的依赖性。链间横向相互作用的序参数增加。随着CoQ(10)包封重量含量分别为1%、5%、10%和32.5%,反式构象减少,gauche构象增加。然而,当CoQ(10)重量含量为25%时,链内纵向相互作用的序参数高于纯纳米脂质体。结果表明,CoQ(10)可能插入脂质分子之间并扰乱双层结构。