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首页> 外文期刊>Naunyn-Schmiedeberg's Archives of Pharmacology >Inhibition by general anesthetic propofol of compound action potentials in the frog sciatic nerve and its chemical structure
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Inhibition by general anesthetic propofol of compound action potentials in the frog sciatic nerve and its chemical structure

机译:青铜序曲神经中的复合作用电位一般麻醉素抑制抑制作用及其化学结构

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摘要

Although the intravenous general anesthetic propofol (2,6-diisopropylphenol) has an ability to inhibit nerve conduction, this has not been fully examined. Various agents inhibit compound action potentials (CAPs) in a manner dependent on their chemical structures. To determine propofol's chemical structure that is important in nerve conduction inhibition, we examined the effects of propofol and its related compounds on fast-conducting CAPs recorded from the frog sciatic nerve by using the air-gap method. Propofol concentration-dependently reduced the peak amplitude of the CAP with a half-maximal inhibitory concentration (IC50) value of 0.14mM. A similar inhibition was produced by other phenols, 4-sec-butylphenol and 4-amylphenol (IC50 values: 0.33 and 0.20mM, respectively). IC50 values for these and more phenols (4-isopropylphenol, 4-tert-butylphenol, and 4-ter-amylphenol; data published previously) were correlated with the logarithm of their octanol-water partition coefficients. A phenol having ketone group (raspberry ketone) and alcohols (3-phenyl-1-propanol and 2-phenylethylalcohol) inhibited CAPs less effectively than the above-mentioned phenols. The local anesthetic (LA) benzocaine reduced CAP peak amplitudes with an IC50 of 0.80mM, a value larger than that of propofol. When compared with other LAs, propofol activity was close to those of ropivacaine, levobupivacaine, and pramoxine, while benzocaine activity was similar to those of cocaine and lidocaine. It is concluded that propofol inhibits nerve conduction, possibly owing to isopropyl and hydroxyl groups bound to the benzene ring of propofol and to its lipophilicity; propofol's efficacy is comparable to those of some LAs. These results could serve to develop propofol-related agents exhibiting analgesia when applied topically.
机译:虽然静脉内的一般麻醉素醇(2,6-二异丙基苯酚)具有抑制神经传导的能力,但这尚未得到完全检查。各种试剂以取决于其化学结构的方式抑制复合作用电位(盖子)。为了测定神经传导抑制中重要的异丙酚的化学结构,我们通过使用空气间隙方法检查了异丙酚及其相关化合物对从青蛙坐骨神经记录的快速导电帽的影响。异丙酚浓度依赖性地降低了帽的峰值幅度,具有半最大抑制浓度(IC50)值为0.14mm。通过其它酚,4-仲丁基苯酚和4-淀粉蛋白(IC 50值:0.33和0.20mm)产生类似的抑制。这些和更多酚(4-异丙基苯酚,4-叔丁基苯酚和4倍淀粉蛋白;先前发表的数据)的IC 50值与其辛醇 - 水分配系数的对数相关。具有酮基(覆盆子酮)和醇(3-苯基-1-丙醇和2-苯基乙醇)的苯酚抑制了比上述酚抑制的盖子。局部麻醉剂(LA)苯并催化减少帽峰幅度,IC50为0.80mm,值大于异丙酚的值。与其他LAS相比,异丙酚活性接近罗哌卡因,左旋疟原虫和普朗辛,而苯会对活性类似于可卡因和利多卡因。结论是,异丙酚抑制神经传导,可能由于异丙基和与苯甲醚的苯环结合的异丙基和羟基;异丙酚的疗效与一些LAS的功效相当。这些结果可以用于在局部施用时开发出现镇痛的异丙酚相关剂。

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