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[3H]-咪唑安定与大鼠脑膜结合的特性研究

Characterization of [3H]-imidazenil binding to rat brain membranes.

作者信息

Lipartiti M, Arban R, Fadda E, Zanotti A, Giusti P

机构信息

Department of Pharmacology, University of Padua, Italy.

出版信息

Br J Pharmacol. 1995 Mar;114(6):1159-64. doi: 10.1111/j.1476-5381.1995.tb13328.x.

Abstract
  1. The binding of [3H]-imidazenil, an imidazobenzodiazepine carboxamide, to rat cerebellar membranes was characterized at different temperatures. 2. Specific binding was linear with tissue concentrations and reached maximum after 90, 30 and 5 min incubation at 0, 21 and 37 degrees C, respectively. The binding was of high affinity, specific and saturable; non linear regression and Scatchard analysis of the data was compatible with the presence of a single population of receptor sites with Bmax of 0.74 +/- 0.020, 0.90 +/- 0.011 and 1.0 +/- 0.036 pmol mg-1 protein at 0, 21 and 27 degrees C, respectively. Binding affinity decreased with increasing temperature: Kd were 0.29 +/- 0.051 nM (0 degrees C), 1.0 +/- 0.080 nM (21 degrees C) and 2.4 +/- 0.38 nM (37 degrees C). 3. At all tested temperatures, [3H]-imidazenil binding was reversible and the Kd calculated from the dissociation and association rate constants approximated the equilibrium Kd. 4. In the presence of gamma-aminobutyric acid (GABA), Kd increased 4 fold at 0 degrees C, whereas Bmax increased, albeit slightly, at all temperatures. 5. Benzodiazepines (BZDs), imidazopyridines and methyl-beta-carboline-3-carboxylate (beta CCM) were effective inhibitors of [3H]-imidazenil binding. Conversely, GABAA antagonists, barbiturates, picrotoxin and peripheral BZD receptor ligands were devoid of any activity. 6. Comparing [3H]-imidazenil to [3H]-flumazenil binding in various brain areas, similar densities of recognition sites as well as like regional differences in the distribution of binding sites for both radioligands were observed (cortex = striatum > cerebellum > spinal cord). 7. The present results indicate that [3H]-imidazenil specifically binds to the BZD sites of GABAA receptors. Furthermore, the effects of GABA and temperature differentiate imidazenil from classicalBZDs. It is suggested that the characteristics of imidazenil binding may be relevant to the in vivo pharmacology of the drug.
摘要
  1. 在不同温度下对咪唑并苯二氮䓬羧酰胺[3H]-咪唑安定与大鼠小脑膜的结合进行了表征。2. 特异性结合与组织浓度呈线性关系,在0、21和37℃分别孵育90、30和5分钟后达到最大值。该结合具有高亲和力、特异性和饱和性;对数据进行非线性回归和Scatchard分析表明,存在单一受体位点群体,在0、21和27℃时,Bmax分别为0.74±0.020、0.90±0.011和1.0±0.036 pmol mg-1蛋白。结合亲和力随温度升高而降低:Kd分别为0.29±0.051 nM(0℃)、1.0±0.080 nM(21℃)和2.4±0.38 nM(37℃)。3. 在所有测试温度下,[3H]-咪唑安定的结合是可逆的,由解离和缔合速率常数计算得到的Kd接近平衡Kd。4. 在γ-氨基丁酸(GABA)存在下,0℃时Kd增加4倍,而在所有温度下Bmax均略有增加。5. 苯二氮䓬类药物(BZDs)、咪唑吡啶类和甲基-β-咔啉-3-羧酸酯(βCCM)是[3H]-咪唑安定结合的有效抑制剂。相反,GABAA拮抗剂、巴比妥类药物、匹鲁卡品和外周BZD受体配体没有任何活性。6. 比较[3H]-咪唑安定与[3H]-氟马西尼在不同脑区的结合情况,观察到两种放射性配体的识别位点密度相似以及结合位点分布的区域差异相似(皮质 = 纹状体 > 小脑 > 脊髓)。7. 目前的结果表明,[3H]-咪唑安定特异性结合于GABAA受体的BZD位点。此外,GABA和温度的影响使咪唑安定与经典BZDs有所不同。提示咪唑安定结合的特性可能与该药物的体内药理学有关。

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Characterization of [3H]-imidazenil binding to rat brain membranes.[3H]-咪唑安定与大鼠脑膜结合的特性研究
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