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首页> 外文期刊>European Journal of Pharmacology: An International Journal >Effect of dextromethorphan on human K(v)1.3 channel activity: involvement of C-type inactivation.
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Effect of dextromethorphan on human K(v)1.3 channel activity: involvement of C-type inactivation.

机译:右美沙芬对人K(v)1.3通道活性的影响:涉及C型失活。

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摘要

Dextromethorphan exhibits neuroprotective effects against inflammation-mediated neurodegeneration. However, relatively little is known regarding the molecular mechanism for this inflammation-mediated neuroprotection. Human K(v)1.3 channels, one of the voltage-gated potassium channels, are widely expressed in the immune and nervous systems. Activation of human K(v)1.3 channels causes neuroglia-mediated neurodegeneration. Agents that inhibit human K(v)1.3 channel activity have been developed as novel drugs for immunosuppression. In the present study, we investigated the effects of dextromethorphan on human K(v)1.3 or K(v)1.2 channel activity heterologously expressed in Xenopus laevis oocytes. The channel currents were measured with the two-electrode voltage clamp technique. Activation of both channels induced outward peak and steady-state currents. Dextromethorphan treatment induced a slight inhibition of peak currents in human K(v)1.2 and K(v)1.3 channels, whereas dextromethorphan profoundly inhibited the steady-state currents of human K(v)1.3 channels compared to K(v)1.2 channel currents. Dextromethorphan's action on steady-state currents of human K(v)1.3 channels was in a concentration-dependent manner. The half-maximal inhibitory concentration (IC(50)) on steady-state currents of human K(v)1.3 channels was 12.8+/-1.6muM. Dextromethorphan also accelerated the C-type inactivation rate, increased the current decay rate, and inhibited currents in a use-dependent manner. These results indicate that dextromethorphan accelerates C-type inactivation of human K(v)1.3 channels and acts as an open-channel blocker. These results further suggest the possibility that dextromethorphan-mediated acceleration of C-type inactivation of human K(v)1.3 channels might be one of the cellular bases of dextromethorphan-mediated protection against inflammation-mediated neurodegeneration.
机译:右美沙芬对炎症介导的神经变性表现出神经保护作用。但是,关于这种炎症介导的神经保护的分子机制知之甚少。人K(v)1.3通道,电压门控钾通道之一,在免疫和神经系统中广泛表达。人类K(v)1.3通道的激活导致神经胶质细胞介导的神经变性。抑制人类K(v)1.3通道活性的药物已被开发为用于免疫抑制的新药。在本研究中,我们调查了右美沙芬对非洲爪蟾卵母细胞异源表达的人K(v)1.3或K(v)1.2通道活性的影响。使用两电极电压钳制技术测量沟道电流。两个通道的激活都会引起向外的峰值电流和稳态电流。右美沙芬治疗对人K(v)1.2和K(v)1.3通道的峰值电流有轻微的抑制作用,而右美沙芬与K(v)1.2通道电流相比则深刻抑制了人K(v)1.3通道的稳态电流。 。右美沙芬对人K(v)1.3通道稳态电流的作用是浓度依赖性的。对人类K(v)1.3通道的稳态电流的半最大抑制浓度(IC(50))为12.8 +/-1.6μM。右美沙芬还以依赖于使用的方式加速了C型失活速率,增加了电流衰减速率,并抑制了电流。这些结果表明右美沙芬加速人类K(v)1.3通道的C型失活,并充当开放通道阻滞剂。这些结果进一步表明右美沙芬介导的人类K(v)1.3通道C型失活的加速可能是右美沙芬介导的针对炎症介导的神经变性的保护的细胞基础之一。

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