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自旋标记局部麻醉剂在磷脂酰胆碱双层膜中的多平衡结合

Multiequilibrium binding of a spin-labeled local anesthetic in phosphatidylcholine bilayers.

作者信息

Limbacher H P, Blickenstaff G D, Bowen J H, Wang H H

出版信息

Biochim Biophys Acta. 1985 Jan 10;812(1):268-76. doi: 10.1016/0005-2736(85)90548-6.

Abstract

The equilibria among spin-labeled amine local anesthetic species in dioleoylphosphatidylcholine liposomes at an anesthetic: lipid mole ratio of 1:100 are investigated. Electron spin resonance (ESR) spectra demonstrate that anesthetic mobility within the bilayer is charge-dependent, with the uncharged species the more mobile. Partition coefficient measurements confirm ESR evidence that changes in anesthetic mobility represent anesthetic-phospholipid interaction and not changes in bilayer fluidity. Spin-exchange attenuation experiments show that anesthetics within the bilayer are accessible to the aqueous medium. Dependence of tertiary-amine anesthetic pK on dielectric constant has been used to estimate the interfacial pK. We propose a model of equilibria among species of the tertiary amine anesthetic in the aqueous medium and those intercalated in the bilayer, including a species electrostatically bound to the lipid phosphate. Using experimentally determined equilibrium constants, the model provides the binding constant between the electrostatically bound and unbound cationic anesthetics within the bilayer. The model stimulates the pH dependence of the mobile fraction of total anesthetic population determined by subtraction techniques on experimental ESR spectra.

摘要

研究了在麻醉剂与脂质摩尔比为1:100的二油酰磷脂酰胆碱脂质体中,自旋标记胺类局部麻醉剂物种之间的平衡。电子自旋共振(ESR)光谱表明,双层膜内麻醉剂的流动性取决于电荷,不带电荷的物种流动性更强。分配系数测量证实了ESR的证据,即麻醉剂流动性的变化代表了麻醉剂与磷脂的相互作用,而不是双层膜流动性的变化。自旋交换衰减实验表明,双层膜内的麻醉剂可与水相介质接触。叔胺麻醉剂的pK对介电常数的依赖性已被用于估计界面pK。我们提出了一种叔胺麻醉剂在水相介质中的物种与插入双层膜中的物种之间的平衡模型,包括一种静电结合到脂质磷酸基团上的物种。利用实验测定的平衡常数,该模型提供了双层膜内静电结合和未结合的阳离子麻醉剂之间的结合常数。该模型模拟了通过对实验ESR光谱采用减法技术确定的总麻醉剂群体中可移动部分的pH依赖性。

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