首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Partitioning of Charged Local Anesthetics into Model Membranes Formed by Cationic Surfactant: Effect of Hydrophobicity of Local Anesthetic Molecules
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Partitioning of Charged Local Anesthetics into Model Membranes Formed by Cationic Surfactant: Effect of Hydrophobicity of Local Anesthetic Molecules

机译:带电荷的局部麻醉剂分配到阳离子表面活性剂形成的模型膜中:局部麻醉剂分子疏水性的影响

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摘要

The partitioning of five hydrochloride salts of local anesthetics, dibucaine (DC.HC1), tetracaine (TC.HCI), bupivacaine (BC.HC1), lidocaine (LC.HC1), and procaine (PC'HC1), into surface-adsorbed films and micelles formed by decylammonium chloride (DeAC) was studied by the surface tension of aqueous solutions of DeAC-local anesthetic mixtures. Thermodynamic quantities of the partitioning of the anesthetics, total surface density, and compositions of the anesthetics in the surface-adsorbed film and micelle were evaluated by applying thermodynamic equations to the surface tension data. The quantities of the anesthetics partitioned into the molecular aggregates of DeAC were determined from the phase diagrams of surface adsorption and micelle formation. The phase diagrams of surface adsorption and micelle formation showed that the local anesthetic partitioned into the surface-adsorbed film and micelle of DeAC decreases in the order of DC.HC1, TC.HC1, BC.HC1, LC-HC1, and PC-HC1. A good correlation was seen between the partitioning order and anesthetic potency of these local anesthetics. The phase diagrams of DeAC-BC.HC1, DeAC-LC.HC1 and DeAC-PC.HCI systems behaved peculiarly that the compositions of these systems in the adsorbed film and micelle had negative values. The results suggested that weakly hydrophobic anesthetics such as BC.HC1, LC.HC1, and PC-HC1 did not partition into the hydrophobic environment of the adsorbed film and micelle of DeAC. Strongly hydrophobic local anesthetics such as DC.HC1 and TC.HC1 partitioned into the aggregates of DeAC. The difference is attributable to the hydrophobicity of their molecules. By comparing the compositions of micelle with those of surface-adsorbed film at the critical micelle concentration, it was shown that the partitioning of the anesthetics was also influenced by the geometry of the aggregates into which the anesthetics were partitioned.
机译:将五种局部麻醉药的盐酸盐,地布卡因(DC.HC1),丁卡因(TC.HCI),布比卡因(BC.HC1),利多卡因(LC.HC1)和普鲁卡因(PC'HC1)分为表面吸附剂通过DeAC-局麻药混合物水溶液的表面张力研究了由十氯化铵(DeAC)形成的薄膜和胶束。通过将热力学方程式应用于表面张力数据来评估麻醉剂分配,总表面密度以及麻醉剂在表面吸附膜和胶束中的热力学量。从表面吸附和胶束形成的相图确定分配到DeAC分子聚集体中的麻醉药数量。表面吸附和胶束形成的相图表明,局部麻醉剂分配到表面吸附膜中,DeAC的胶束按照DC.HC1,TC.HC1,BC.HC1,LC-HC1和PC-HC1的顺序降低。在这些局部麻醉剂的分配顺序和麻醉效力之间发现了良好的相关性。 DeAC-BC.HC1,DeAC-LC.HC1和DeAC-PC.HCI系统的相图表现出独特的特性,即这些系统在吸附膜和胶束中的组成均为负值。结果表明,BC.HC1,LC.HC1和PC-HC1等弱疏水性麻醉药未分配到DeAC吸附膜和胶束的疏水环境中。强疏水性局麻药(例如DC.HC1和TC.HC1)分配到DeAC的聚集物中。差异归因于其分子的疏水性。通过比较在临界胶束浓度下胶束的组成与表面吸附膜的组成,表明麻醉剂的分配也受到麻醉剂分配到的聚集体的几何形状的影响。

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