首页> 美国卫生研究院文献>British Journal of Pharmacology and Chemotherapy >Inhibition by propofol of 3H-batrachotoxinin-A 20-alpha-benzoate binding to voltage-dependent sodium channels in rat cortical synaptosomes.
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Inhibition by propofol of 3H-batrachotoxinin-A 20-alpha-benzoate binding to voltage-dependent sodium channels in rat cortical synaptosomes.

机译:异丙酚对大鼠皮质突触小体中3H-巴曲毒素-A20-α-苯甲酸酯与电压依赖性钠通道结合的抑制作用。

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摘要

1. Propofol (2,6 di-isopropylphenol), an intravenous general anaesthetic, blocks voltage-dependent Na+ channels (Na+ channels). In this study the interaction between propofol and Na+ channels was analysed by examining its effects on neurotoxin binding to various receptor sites of the Na+ channel in rat cerebrocortical synaptosomes. 2. Propofol (10-200 microM) exhibited concentration-dependent inhibition of equilibrium binding of [3H]-batrachotoxinin-A 20-alpha-benzoate ([3H]-BTX-B) to receptor site 2 of the Na+ channel (mean IC50 = 26 microM; 6.5 microM free). Scatchard analysis revealed that propofol significantly increased the KD without affecting the Bmax for [3H]-BTX-B binding. 3. Kinetic studies of [3H]-BTX-B binding in the presence of various concentrations (25-200 microM) of propofol showed no significant changes in the association rate of [3H]-BTX-B. However, propofol at 200 microM significantly increased the rate of dissociation of [3H]-BTX-B, consistent with an indirect allosteric competitive mechanism of inhibition. 4. [3H]-saxitoxin binding to receptor site 1 and [3H]-brevetoxin-3 binding to receptor site 5 of the Na+ channel were not inhibited by propofol (10-200 microM). 5. Propofol (10-100 microM) exhibited concentration-dependent inhibition of veratridine-evoked Na+ influx either in the absence or presence of scorpion toxin with IC50 values of 46 microM (8.8 microM free) and 44 microM (8.5 microM free), respectively. 6. These results suggest that propofol inhibits voltage-dependent Na+ channels due to a preferential interaction with the inactivated state of the channel. Blockade of Na+ channels by propofol, which is known to inhibit glutamate release from synaptosomes, may contribute to its anaesthetic, anticonvulsant and neuroprotective properties.
机译:1.异丙酚(2,6二异丙基苯酚),一种静脉全身麻醉剂,可阻断电压依赖性Na +通道(Na +通道)。在这项研究中,通过检查异丙酚和Na +通道对神经毒素与大鼠脑皮质突触小体中Na +通道各个受体位点结合的影响,分析了它们之间的相互作用。 2.异丙酚(10-200 microM)对[3H]-巴曲毒素-A20-α-苯甲酸酯([3H] -BTX-B)到Na +通道受体2的平衡结合具有浓度依赖性的抑制作用(平均IC50) = 26 microM;不含6.5 microM)。斯卡查德分析显示,丙泊酚显着增加KD而不影响[3H] -BTX-B结合的Bmax。 3.在各种浓度(25-200 microM)的异丙酚存在下[3H] -BTX-B结合的动力学研究表明,[3H] -BTX-B的缔合速率无明显变化。但是,200 microM的异丙酚显着提高了[3H] -BTX-B的解离速率,这与间接的变构竞争抑制机制相符。 4.异丙酚(10-200 microM)不抑制[3H]-萨克斯毒素与受体位点1的结合和[3H]-短毒素-3与Na +通道受体位点5的结合。 5.在不存在或存在蝎毒素的情况下,丙泊酚(10-100 microM)均表现出浓度依赖性抑制藜芦啶诱发的Na +流入,IC50值分别为46 microM(不含8.8 microM)和44 microM(不含8.5 microM)。 。 6.这些结果表明,丙泊酚由于与通道的失活状态优先相互作用而抑制了电压依赖性Na +通道。丙泊酚对Na +通道的阻滞作用是已知的,它可以抑制谷氨酸从突触体释放,这可能有助于其麻醉,抗惊厥和神经保护作用。

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