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艾芬地尔对大鼠和小鼠培养海马锥体神经元中高电压激活的Ca2+通道的阻断作用:与N-甲基-D-天冬氨酸受体拮抗剂作用的比较

Blockade by ifenprodil of high voltage-activated Ca2+ channels in rat and mouse cultured hippocampal pyramidal neurones: comparison with N-methyl-D-aspartate receptor antagonist actions.

作者信息

Church J, Fletcher E J, Baxter K, MacDonald J F

机构信息

Department of Anatomy, University of British Columbia, Vancouver, Canada.

出版信息

Br J Pharmacol. 1994 Oct;113(2):499-507. doi: 10.1111/j.1476-5381.1994.tb17017.x.

Abstract
  1. The block by ifenprodil of voltage-activated Ca2+ channels was investigated in intracellular free calcium concentration ([Ca2+]i) evoked by 50 mM K+ (high-[K+]o) in Fura-2-loaded rat hippocampal pyramidal neurones in culture and on currents carried by Ba2+ ions (IBa) through Ca2+ channels in mouse cultured hippocampal neurones under whole-cell voltage-clamp. The effects of ifenprodil on voltage-activated Ca2+ channels were compared with its antagonist actions on N-methyl-D-aspartate- (NMDA) evoked responses in the same neuronal preparations. 2. Rises in [Ca2+]i evoked by transient exposure to high-[K+]o in our preparation of rat cultured hippocampal pyramidal neurones are mediated predominantly by Ca2+ flux through nifedipine-sensitive Ca2+ channels, with smaller contributions from nifedipine-resistant, omega-conotoxin GVIA-sensitive Ca2+ channels and Ca2+ channels sensitive to crude funnel-web spider venom (Church et al., 1994). Ifenprodil (0.1-200 microM) reversibly attenuated high-[K+]o-evoked rises in [Ca2+]i with an IC50 value of 17 +/- 3 microM, compared with an IC50 value of 0.7 +/- 0.1 microM for the reduction of rises in [Ca2+]i evoked by 20 microM NMDA. Tested in the presence of nifedipine 10 microM, ifenprodil (1-50 microM) produced a concentration-dependent reduction of the dihydropyridine-resistant high-[K+]o-evoked rise in [Ca2+]i with an IC50 value of 13 +/- 4 microM. The results suggest that ifenprodil blocks Ca2+ flux through multiple subtypes of high voltage-activated Ca2+ channels. 3. Application of the polyamine, spermine (0.25-5 mM), produced a concentration-dependent reduction of rises in [Ca2+]i evoked by high-[K+]o. The antagonist effects of ifenprodil 20 micro M on high-[K+]0-evoked rises in [Ca2+]. were attenuated by spermine 0.25 mM but not by putrescine 1 or 5 mM. In contrast,spermine 0.1 mM increased rises in [Ca2+]i evoked by NMDA and enhanced the ifenprodil (5 micro M) block of NMDA-evoked rises in [Ca2+]i.4. Similar results were obtained in mouse cultured hippocampal pyramidal neurones under whole-cell voltage-clamp. Ifenprodil attenuated both the peak and delayed whole-cell IB. with an IC% value of 18 +/- 2 micro M, whilst it attenuated steady-state NMDA-evoked currents with an IC50 of 0.8 +/- 0.2 micro M. Block of IBa by ifenprodil 10 JaM was rapid in onset, fully reversible and occurred without change in thecurrent-voltage characteristics of Ba. The ifenprodil block of IBa was enhanced on membrane depolarization and was weakly dependent on the frequency of current activation. Spermine 0.1 mM potentiated control NMDA-evoked currents but attenuated IB,. In agreement with the microspectrofluorimetric studies, co-application of spermine produced a small enhancement of the inhibitory effect of ifenprodil 10 micro M on NMDA-evoked responses whereas the reduction of I4 by ifenprodil 10 micro M in the presence of spermine was less than expected if the inhibitory effects of ifenprodil and spermine on IBa were simply additive.5. The results indicate that ifenprodil blocks high voltage-activated Ca2+ channels in rat and mouse cultured hippocampal pyramidal neurones. Although the Ca2+ channel blocking actions of ifenprodil are observed at higher concentrations than those associated with NMDA antagonist activity, Ca2+ channel blockade may contribute, at least in part, to the established neuroprotective and anticonvulsant properties of the compound.
摘要
  1. 在培养的、用Fura - 2负载的大鼠海马锥体神经元中,研究了ifenprodil对50 mM K⁺(高[K⁺]ₒ)诱发的细胞内游离钙浓度([Ca²⁺]i)的影响,以及在全细胞膜片钳条件下,ifenprodil对小鼠培养海马神经元中Ba²⁺离子(IBa)通过Ca²⁺通道所携带电流的影响。将ifenprodil对电压门控Ca²⁺通道的作用与其在相同神经元标本中对N - 甲基 - D - 天冬氨酸(NMDA)诱发反应的拮抗作用进行了比较。2. 在我们培养的大鼠海马锥体神经元标本中,短暂暴露于高[K⁺]ₒ所诱发的[Ca²⁺]i升高主要由通过硝苯地平敏感的Ca²⁺通道的Ca²⁺通量介导,来自硝苯地平耐药、ω - 芋螺毒素GVIA敏感的Ca²⁺通道以及对粗漏斗网蜘蛛毒液敏感的Ca²⁺通道的贡献较小(Church等人,1994)。I fenprodil(0.1 - 200 μM)可逆地减弱高[K⁺]ₒ诱发的[Ca²⁺]i升高,IC50值为17 ± 3 μM,而对于减少20 μM NMDA诱发的[Ca²⁺]i升高,IC50值为0.7 ± 0.1 μM。在10 μM硝苯地平存在下进行测试时,ifenprodil(1 - 50 μM)使二氢吡啶耐药的高[K⁺]ₒ诱发的[Ca²⁺]i升高呈浓度依赖性降低,IC50值为13 ± 4 μM。结果表明ifenprodil阻断通过多种高电压激活Ca²⁺通道亚型的Ca²⁺通量。3. 应用多胺精胺(0.25 - 5 mM)使高[K⁺]ₒ诱发的[Ca²⁺]i升高呈浓度依赖性降低。20 μM的ifenprodil对高[K⁺]ₒ诱发的[Ca²⁺]升高的拮抗作用被0.25 mM精胺减弱,但未被1或5 mM腐胺减弱。相反,0.1 mM精胺增加了NMDA诱发的[Ca²⁺]i升高,并增强了ifenprodil(5 μM)对NMDA诱发的[Ca²⁺]i升高的阻断作用。4. 在全细胞膜片钳条件下,小鼠培养海马锥体神经元也获得了类似结果。I fenprodil使全细胞IBa的峰值和延迟成分均减弱,IC50值为18 ± 2 μM,而它使稳态NMDA诱发电流减弱,IC50为0.8 ± 0.2 μM。10 μM的ifenprodil对IBa的阻断起效迅速、完全可逆,且Ba²⁺的电流 - 电压特性无变化。I fenprodil对IBa的阻断在膜去极化时增强,且对电流激活频率的依赖性较弱。0.1 mM精胺增强对照NMDA诱发的电流,但减弱IBa。与显微荧光测定研究一致,精胺共同应用使10 μM的ifenprodil对NMDA诱发反应的抑制作用有小幅度增强,而在精胺存在下,10 μM的ifenprodil对I Ba的降低幅度小于ifenprodil和精胺对I Ba的抑制作用简单相加时的预期值。5. 结果表明ifenprodil阻断大鼠和小鼠培养海马锥体神经元中的高电压激活Ca²⁺通道。尽管在比与NMDA拮抗剂活性相关的浓度更高时观察到ifenprodil的Ca²⁺通道阻断作用,但Ca²⁺通道阻断可能至少部分地促成了该化合物已确立的神经保护和抗惊厥特性。

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