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美金刚对非洲爪蟾卵母细胞内向外和外向内膜片钳记录的NR1a/2A受体的阻断动力学。

Blocking kinetics of memantine on NR1a/2A receptors recorded in inside-out and outside-out patches from Xenopus oocytes.

作者信息

Parsons Chris G, Gilling Kate E, Jatzke Claudia

机构信息

In Vitro Pharmacology, Preclinical Research and Development, Merz Pharmaceuticals GmbH, Eckenheimer Landstrasse 100, D-60318, Frankfurt am Main 1, Germany.

出版信息

J Neural Transm (Vienna). 2008 Oct;115(10):1367-73. doi: 10.1007/s00702-008-0087-7. Epub 2008 Jul 8.

Abstract

Previous experiments on primary cultures of hippocampal/cortical neurones revealed that the block and unblock of N-Methyl-D-Aspartate (NMDA) receptor channels by memantine showed double exponential kinetics and that the offset kinetics following a voltage-step were much faster than following a concentration jump. There are, however, two major problems when using such cultured primary neurones for these experiments (1) the almost certain expression of heterogeneous NMDA receptor subunits which could underlie double exponential kinetics due to different potencies at receptor subtypes and (2) slow space- and concentration-clamp due to neuronal morphology which could mask even faster kinetics. Therefore, we performed similar experiments with Xenopus oocytes exclusively expressing one NMDA receptor type (NR1a/2A) at high levels which allowed recordings from membrane patches with large currents. The use of inside-out patches for voltage-step and outside-out patches in combination with a piezo driven fast application system largely negated potential space- and concentration-clamp problems. Block and unblock of the NMDA receptor by memantine after both voltage jump and concentration jumps showed triple exponential kinetics. The fast onset kinetics of NMDA receptor channel block following both concentration-clamp and voltage jumps from +70 to -70 mV were similar. In contrast, offset kinetics after a voltage-step from -70 to +70 mV were much faster than following a concentration jump at the holding potential of -70 mV. These results provide further support for the hypothesis that rapid relief of block via strong synaptic membrane depolarisation underlies the good therapeutic profile of memantine.

摘要

先前对海马体/皮质神经元原代培养物进行的实验表明,美金刚对N-甲基-D-天冬氨酸(NMDA)受体通道的阻断和解除阻断呈现双指数动力学,且电压阶跃后的解除动力学比浓度跃变后的要快得多。然而,在这些实验中使用此类原代培养神经元存在两个主要问题:(1)几乎可以肯定存在异质性NMDA受体亚基的表达,这可能是由于受体亚型的不同效力导致双指数动力学的基础;(2)由于神经元形态导致的缓慢的空间钳制和浓度钳制,这甚至可能掩盖更快的动力学。因此,我们用非洲爪蟾卵母细胞进行了类似实验,这些卵母细胞高水平表达单一类型的NMDA受体(NR1a/2A),这使得能够从具有大电流的膜片上进行记录。使用内面向外膜片进行电压阶跃以及将向外膜片与压电驱动的快速应用系统相结合,在很大程度上消除了潜在的空间钳制和浓度钳制问题。在电压跃变和浓度跃变后,美金刚对NMDA受体的阻断和解除阻断均呈现三指数动力学。在浓度钳制和从+70 mV到 -70 mV的电压跃变后,NMDA受体通道阻断的快速起始动力学相似。相比之下,在从 -70 mV到 +70 mV的电压阶跃后,解除动力学比在 -70 mV的保持电位下进行浓度跃变后的要快得多。这些结果为以下假设提供了进一步支持,即通过强烈的突触膜去极化快速解除阻断是美金刚良好治疗效果的基础。

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