Hashizaki Kaname, Taguchi Hiroyuki, Itoh Chika, Sakai Hideki, Abe Masahiko, Saito Yoshihiro, Ogawa Naotake
College of Pharmacy, Nihon University, Funabashi, Chiba, Japan.
Chem Pharm Bull (Tokyo). 2003 Jul;51(7):815-20. doi: 10.1248/cpb.51.815.
The effects of poly(ethylene glycol) (PEG) chain length of PEG-lipid on the membrane characteristics of liposomes were investigated by differential scanning calorimetry (DSC), freeze-fracture electron microscopy (FFEM), fluorescence polarization measurement and permeability measurement using carboxyfluorescein (CF). PEG-liposomes were prepared from mixtures of dipalmitoyl phosphatidylcholine (DPPC) and distearoyl phosphatidylethanolamines with covalently attached PEG molecular weights of 1000, 2000, 3000 and 5000 (DSPE-PEG). DSC and FFEM results showed that the addition of DSPE-PEG to DPPC in the preparation of liposomes caused the lateral phase separation both in the gel and liquid-crystalline states. The fluidity in the hydrocarbon region of liposomal bilayer membranes was not significantly changed by the addition of DSPE-PEG, while that in the interfacial region was markedly increased. From these results, it was anticipated that the CF leakage from PEG-liposomes is accelerated compared with DPPC liposomes. However, CF leakage from liposomes containing DSPE-PEG with a 0.060 mol fraction was depressed compared with regular liposomes, and the leakage decreased with increasing PEG chain length. Furthermore, the CF leakage from liposomes containing DSPE-PEG with a 0.145 mol fraction was slightly increased compared with that of liposomes containing DSPE-PEG with a 0.060 mol fraction. It is suggested that the solute permeability from the PEG-liposomes was affected by not only properties of the liposomal bilayer membranes such as phase transition temperature, phase separation and membrane fluidity, but also the PEG chain of the liposomal surface.
通过差示扫描量热法(DSC)、冷冻断裂电子显微镜(FFEM)、荧光偏振测量以及使用羧基荧光素(CF)的渗透率测量,研究了聚乙二醇(PEG)脂质体中聚乙二醇(PEG)链长对脂质体膜特性的影响。PEG脂质体由二棕榈酰磷脂酰胆碱(DPPC)和共价连接的PEG分子量分别为1000、2000、3000和5000的二硬脂酰磷脂酰乙醇胺(DSPE-PEG)的混合物制备而成。DSC和FFEM结果表明,在脂质体制备过程中向DPPC中添加DSPE-PEG会导致在凝胶态和液晶态下均发生横向相分离。添加DSPE-PEG后,脂质体双层膜烃区域的流动性没有显著变化,而界面区域的流动性则明显增加。根据这些结果,可以预期与DPPC脂质体相比,PEG脂质体中CF的泄漏会加速。然而,与常规脂质体相比,含有摩尔分数为0.060的DSPE-PEG的脂质体中CF的泄漏受到抑制,并且泄漏随着PEG链长的增加而减少。此外,与含有摩尔分数为0.060的DSPE-PEG的脂质体相比,含有摩尔分数为0.145的DSPE-PEG的脂质体中CF的泄漏略有增加。这表明PEG脂质体的溶质渗透率不仅受脂质体双层膜的特性(如相变温度、相分离和膜流动性)影响,还受脂质体表面PEG链的影响。