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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Thermodynamics of interaction of octyl glucoside with phosphatidylcholine vesicles: partitioning and solubilization as studied by high sensitivity titration calorimetry
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Thermodynamics of interaction of octyl glucoside with phosphatidylcholine vesicles: partitioning and solubilization as studied by high sensitivity titration calorimetry

机译:辛基葡糖苷与磷脂酰胆碱囊泡相互作用的热力学:高灵敏度滴定量热法研究的分配和溶解

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摘要

The interaction of the surfactant octyl glucoside (OG) with dimyristoylphosphatidylcholine (DMPC), dipalmitoylphosphatidylcholine (DPPC), distearoylphosphatidylcholine (DSPC), and soy bean phosphatidylcholine (soy bean PC) was studied using high-sensitivity titration calorimetry. We determined the partition coefficient of OG between water and lipid bilayers and the transfer enthalpy of the surfactant by addition of lipid vesicles to OG monomers or vice versa. Comparison with the micellization enthalpy of the surfactant gives information on differences in the hydrophobic environment of OG in a liquid-crystalline bilayer or a micelle. The average partition coefficient P in mole fraction units for xe≈0.12–0.2 decreases slightly from 4152 at 27°C to 3479 at 70°C for DMPC and from 4260 to 3879 for soy bean PC, respectively. The transfer enthalpy ΔHT of OG into lipid vesicles is positive at 27°C and negative at 70°C. Its temperature dependence is larger for the incorporation of OG into DMPC than into soy bean PC vesicles. It is concluded that OG in DMPC vesicles is better shielded from water than in soy bean PC vesicles or in micelles. Titration calorimetry was also used to determine the phase boundaries of the coexistence region of mixed vesicles and mixed micelles in the systems OG/DMPC, OG/DPPC, OG/DSPC, and OG/soy bean PC vesicles at 70°C in the liquid-crystalline phase. DMPC and soy bean PC solubilization was also studied at 27°C to investigate the effect of temperature. The effective surfactant to lipid ratios at saturation, Resat, for all PCs studied are in the range between 1.33–1.72 and the ratios at complete solubilization, Resol, are between 1.79–3.06. At 70°C, the Resat values decrease with increasing chain length of the saturated PC. The ratios depend also slightly on temperature and the degree of unsaturation of the fatty acyl chains. For the OG/soy bean PC system, the coexistence range for mixed vesicles and mixed micelles is larger than for the corresponding PCs with saturated chains.
机译:使用高灵敏度滴定量热法研究了表面活性剂辛基葡萄糖苷(OG)与二肉豆蔻酰基磷脂酰胆碱(DMPC),二棕榈酰磷脂酰胆碱(DPPC),二硬脂酰磷脂酰胆碱(DSPC)和大豆磷脂酰胆碱(大豆PC)的相互作用。我们通过将脂质囊泡添加到OG单体中来确定OG在水和脂质双层之间的分配系数以及表面活性剂的转移焓,反之亦然。与表面活性剂的胶束化焓的比较给出了液晶双层或胶束中OG的疏水环境差异的信息。对于xe≈0.12-0.2,以摩尔分数为单位的平均分配系数P分别从DMPC的27152的4152和70°C的70479的3479略有降低,而大豆PC的则从4260降至3879。 OG进入脂质囊泡的转移焓ΔHT在27°C为正,在70°C为负。对于OG掺入DMPC的温度依赖性要大于对大豆PC囊泡的温度依赖性。结论是,DMPC囊泡中的OG较大豆PC囊泡或胶束中的水屏蔽效果更好。滴定量热法还用于确定OG / DMPC,OG / DPPC,OG / DSPC和OG /大豆PC囊泡系统在70°C的液体中混合囊泡和混合胶束共存区域的相界。结晶相。还研究了DMPC和大豆PC的增溶作用,以研究其在27°C下的温度影响。对于所有研究的PC,饱和时有效的表面活性剂与脂质的比率Resat在1.33–1.72之间,完全溶解的比率Resol在1.79–3.06之间。在70°C下,Resat值随饱和PC链长的增加而降低。该比率还稍微取决于温度和脂肪酰基链的不饱和度。对于OG /大豆PC系统,混合囊泡和胶束的共存范围要大于相应的具有饱和链的PC的共存范围。

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