Takeda Koichi, Okuno Hiroko, Hata Takashi, Nishimoto Makoto, Matsuki Hitoshi, Kaneshina Shoji
Department of Biological Science and Technology, Faculty of Engineering, The University of Tokushima, Tokushima, Japan.
Colloids Surf B Biointerfaces. 2009 Aug 1;72(1):135-40. doi: 10.1016/j.colsurfb.2009.03.026. Epub 2009 Apr 5.
The phase transitions of distearoyl- (DSPC), dipalmitoyl- (DPPC) and dimyristoyl-phosphatidylcholine (DMPC) bilayer membranes were observed by means of differential scanning calorimetry as a function of the concentration of a local anesthetic tetracaine hydrochloride (TC.HCl). The depression of both temperatures of the main- and pre-transition, which is accompanied by a decrease in enthalpy changes for both transitions, was observed initially by the addition of TC.HCl. Bilayer interdigitation, which is accompanied by an increase in enthalpy change for the main transition from the interdigitated gel phase to the liquid crystalline phase, was followed by disappearance of the pretransition. The TC.HCl concentration necessary for the bilayer interdigitation was found to be 10, 21 and 6 mmol kg(-1) for DSPC, DPPC and DMPC bilayers, respectively, which was not consistent with the order of acyl-chain length of lipids. Biphasic interactions for the interdigitation, that is, repulsive interaction between polar head groups and van der Waals attractive interaction between hydrophobic chains of lipids, were discussed. On the other hand, vesicle-to-micelle transformation, which is accompanied by a cooperative decrease in enthalpy change for the main transition, was observed at higher concentration of TC.HCl and was confirmed by the vesicle size determined by the dynamic light scattering. The longer the acyl-chain length of lipids, the higher the TC.HCl concentration necessary for the vesicle-to-micelle transformation.
通过差示扫描量热法观察了二硬脂酰磷脂酰胆碱(DSPC)、二棕榈酰磷脂酰胆碱(DPPC)和二肉豆蔻酰磷脂酰胆碱(DMPC)双层膜的相变,该相变是作为局部麻醉剂盐酸丁卡因(TC.HCl)浓度的函数。加入TC.HCl后,最初观察到主转变温度和预转变温度均降低,同时两个转变的焓变也降低。双层膜叉指化伴随着从叉指化凝胶相到液晶相的主转变的焓变增加,随后预转变消失。发现DSPC、DPPC和DMPC双层膜发生双层膜叉指化所需的TC.HCl浓度分别为10、21和6 mmol kg(-1),这与脂质酰基链长度的顺序不一致。讨论了叉指化的双相相互作用,即极性头部基团之间的排斥相互作用和脂质疏水链之间的范德华吸引相互作用。另一方面,在较高浓度的TC.HCl下观察到囊泡向胶束的转变,同时主转变的焓变协同降低,并通过动态光散射测定的囊泡大小得到证实。脂质的酰基链长度越长,囊泡向胶束转变所需的TC.HCl浓度越高。