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首页> 外文期刊>Biophysical Chemistry: An International Journal Devoted to the Physical Chemistry of Biological Phenomena >A new look at the hemolytic effect of local anesthetics, considering their real membrane/water partitioning at pH 7.4.
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A new look at the hemolytic effect of local anesthetics, considering their real membrane/water partitioning at pH 7.4.

机译:考虑到局麻药在pH 7.4下的实际膜/水分配,对局麻药的溶血作用有了新的认识。

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摘要

The interaction of local anesthetics (LA) with biological and phospholipid bilayers was investigated regarding the contribution of their structure and physicochemical properties to membrane partition and to erythrocyte solubilization. We measured the partition into phospholipid vesicles-at pH 5.0 and 10.5-and the biphasic hemolytic effect on rat erythrocytes of: benzocaine, chloroprocaine, procaine, tetracaine, bupivacaine, mepivacaine, lidocaine, prilocaine, and dibucaine. At pH 7.4, the binding of uncharged and charged LA to the membranes was considered, since it results in an ionization constant (pK(app)) different from that observed for the anesthetic in the aqueous phase (pK(w)). Even though it occurred at a pH at which there is a predominance of the charged species, hemolysis was greatly influenced by the uncharged species, revealing that the disrupting effect of LA on these membranes is mainly a consequence of hydrophobic interactions. The correlation between the hemolytic activity and the LA potency shows that hemolytic experiments could be used for the prediction of activity in the development of new LA molecules.
机译:关于局部麻醉剂(LA)与生物和磷脂双层的相互作用,研究了它们的结构和理化性质对膜分配和红细胞溶解的贡献。我们测量了在pH 5.0和10.5下分配到磷脂囊泡中的分配,以及对大鼠红细胞的双相溶血作用:苯佐卡因,氯普鲁卡因,普鲁卡因,丁卡因,布比卡因,甲哌卡因,利多卡因,丙胺卡因和地布卡因。在pH 7.4时,考虑了不带电荷和带电荷的LA与膜的结合,因为它导致的电离常数(pK(app))与在水相中观察到的麻醉常数(pK(w))不同。即使它发生在带电物质占优势的pH值下,溶血也受不带电物质的影响很大,这表明LA对这些膜的破坏作用主要是疏水相互作用的结果。溶血活性与LA效能之间的相关性表明,溶血实验可用于预测新LA分子发育中的活性。

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