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胎粪酸和辅酶酸对次级神经元慢钠通道的影响。

Effects of meconic and comenic acids on slow sodium channels of secondary neurons.

作者信息

Derbenev A V, Krylov B V

机构信息

Pavlov Institute of Physiology, Russian Academy of Sciences, St. Petersburg.

出版信息

Membr Cell Biol. 2000;13(3):379-87.

Abstract

Effects of comenic and meconic acids on cultured dorsal root ganglion cells were investigated by the whole-cell patch clamp technique. The acids, having a well-known antiinflammatory and antibacterial action, decreased effective charge transfer in the activation gating system of TTX-resistant (slow) sodium channels in a dose-dependent manner. The effects were described by Hill's equation. The dissociation constant and Hill coefficient values were K(D) = 100 nM and X = 0.5 (for comenic acid) and K(D) = 10 nM and X = 0.34 (for meconic acid). The nonspecific antagonist of opioid receptors naltrexone totally blocked the effects. We suggest that the acids studied activate a subpopulation of opioid receptors negatively coupled to TTXr sodium channels.

摘要

采用全细胞膜片钳技术研究了科门酸和袂康酸对培养的背根神经节细胞的影响。这两种酸具有众所周知的抗炎和抗菌作用,它们以剂量依赖性方式降低了耐河豚毒素(慢)钠通道激活门控系统中的有效电荷转移。这些作用可用希尔方程描述。解离常数和希尔系数值分别为K(D)=100 nM和X = 0.5(科门酸)以及K(D)=10 nM和X = 0.34(袂康酸)。阿片受体非特异性拮抗剂纳曲酮完全阻断了这些作用。我们认为所研究的酸激活了与耐河豚毒素钠通道负偶联的阿片受体亚群。

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