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Proc Natl Acad Sci U S A. 1985 Jun;82(11):3935-9. doi: 10.1073/pnas.82.11.3935.
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Properties of action potentials carried by divalent cations in identified leech neurons.在已鉴定的水蛭神经元中由二价阳离子携带的动作电位特性。
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Micromolar-affinity benzodiazepine receptors regulate voltage-sensitive calcium channels in nerve terminal preparations.微摩尔亲和力的苯二氮䓬受体调节神经末梢制剂中的电压敏感性钙通道。
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本文引用的文献

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Effects of chlordiazepoxide on depolarization-induced calcium influx into synaptosomes.氯氮䓬对去极化诱导的钙离子流入突触体的影响。
Biochem Pharmacol. 1980 Sep 15;29(18):2439-43. doi: 10.1016/0006-2952(80)90347-0.
2
Segregation of leech neurones by the effect of sparteine on action potential duration.通过金雀花碱对动作电位持续时间的影响来分离水蛭神经元。
J Physiol. 1980 Feb;299:309-21. doi: 10.1113/jphysiol.1980.sp013126.
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Comparative actions of phenytoin and other anticonvulsant drugs on potassium- and veratridine-stimulated calcium uptake in synaptosomes.
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Actions of procaine on specific nociceptive cells in leech central nervous system.普鲁卡因对水蛭中枢神经系统中特定伤害性感受细胞的作用。
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Distribution and morphology of nociceptive cells in the CNS of three species of leeches.
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Procaine actions on tetrodotoxin sensitive and insensitive leech neurons.普鲁卡因对河豚毒素敏感和不敏感的水蛭神经元的作用。
Brain Res. 1984 Jun 8;302(2):297-304. doi: 10.1016/0006-8993(84)90243-9.
7
Micromolar-affinity benzodiazepine receptors regulate voltage-sensitive calcium channels in nerve terminal preparations.微摩尔亲和力的苯二氮䓬受体调节神经末梢制剂中的电压敏感性钙通道。
Proc Natl Acad Sci U S A. 1984 May;81(10):3118-22. doi: 10.1073/pnas.81.10.3118.
8
Active groups of saxitoxin and tetrodotoxin as deduced from actions of saxitoxin analogues on frog muscle and squid axon.从石房蛤毒素类似物对蛙肌和乌贼轴突的作用推导石房蛤毒素和河豚毒素的活性基团。
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9
Micromolar affinity benzodiazepine receptors: identification and characterization in central nervous system.微摩尔亲和力苯二氮䓬受体:中枢神经系统中的鉴定与特性研究
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10
Characterization of photoaffinity labeling of benzodiazepine binding sites.苯二氮䓬结合位点的光亲和标记特性
J Biol Chem. 1981 Oct 10;256(19):9838-42.

苯二氮䓬类药物对已鉴定的水蛭神经元中Ca2+电导的抑制作用。

Inhibition of Ca2+ conductance in identified leech neurons by benzodiazepines.

作者信息

Johansen J, Taft W C, Yang J, Kleinhaus A L, DeLorenzo R J

出版信息

Proc Natl Acad Sci U S A. 1985 Jun;82(11):3935-9. doi: 10.1073/pnas.82.11.3935.

DOI:10.1073/pnas.82.11.3935
PMID:3858853
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC397904/
Abstract

Benzodiazepines (BZs) in micromolar concentrations inhibit Mn2+- and Co2+-sensitive regenerative divalent cation potentials, which are revealed in the presence of tetraethylammonium ion, in leech nociceptive neurons (N cells). This BZ effect is reversible and dose-dependent. The BZs, like Mn2+ and Co2+, inhibit the maximum rate of depolarization (Vmax) and duration of divalent cation potentials at concentrations that do not significantly affect resting membrane potential or Vmax of the Na+-dependent action potential. Ultraviolet-induced BZ binding to micromolar-affinity sites in ganglia and isolated cells irreversibly blocks Ca2+ conductance in neurons without significantly affecting resting membrane potentials. BZ binding studies with leech neuronal membrane show saturable, specific binding in the micromolar concentration range that was similar to BZ binding to synaptosomal membrane fractions. The apparent Kd obtained from the micromolar-affinity BZ binding curve for leech ganglionic membrane preparations agrees well with the apparent Ki estimated from the dose-response curve measuring BZ inhibition of Vmax of the divalent cation potentials. These findings indicate that BZs act like Ca2+-channel antagonists in intact neuronal preparations and are consistent with the hypothesis that BZ binding to micromolar-affinity receptors modulates voltage-gated Ca2+ channels.

摘要

微摩尔浓度的苯二氮䓬类药物(BZs)可抑制水蛭伤害性神经元(N细胞)中对Mn2 +和Co2 +敏感的再生二价阳离子电位,该电位在四乙铵离子存在时可显现。这种BZ效应是可逆的且呈剂量依赖性。BZs与Mn2 +和Co2 +一样,在不显著影响静息膜电位或Na +依赖性动作电位的Vmax的浓度下,抑制二价阳离子电位的最大去极化速率(Vmax)和持续时间。紫外线诱导的BZ与神经节和分离细胞中的微摩尔亲和力位点结合,不可逆地阻断神经元中的Ca2 +电导,而不显著影响静息膜电位。对水蛭神经元膜的BZ结合研究表明,在微摩尔浓度范围内存在饱和、特异性结合,这与BZ与突触体膜组分的结合情况相似。从水蛭神经节膜制剂的微摩尔亲和力BZ结合曲线获得的表观解离常数(Kd)与从测量BZ对二价阳离子电位Vmax抑制作用的剂量反应曲线估算的表观抑制常数(Ki)非常吻合。这些发现表明,BZs在完整的神经元制剂中表现得像Ca2 +通道拮抗剂,这与BZ与微摩尔亲和力受体结合调节电压门控Ca2 +通道的假说一致。