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利用[3H]蝇蕈醇对大鼠中枢神经系统中γ-氨基丁酸受体进行放射自显影定位

Autoradiographic localization of gamma-aminobutyric acid receptors in the rat central nervous system by using [3H]muscimol.

作者信息

Chan-Palay V

出版信息

Proc Natl Acad Sci U S A. 1978 Feb;75(2):1024-8. doi: 10.1073/pnas.75.2.1024.

Abstract

Muscimol, a structural analogue and potent agonist of gamma-aminobutyric acid (GABA), was used in its tritiated form for the autoradiographic localization of GABA receptors in the rat central nervous system. [(3)H]Muscimol ([(3)H]M) was incubated with brain slices or was injected intracortically or into intraocular brain transplants. As indicated by [(3)H]M binding and autoradiographic silver grains, GABA receptors display a laminar distribution over the cerebellar cortex, cerebral cortex, and hippocampus (in order of decreasing quantity); and a nonlaminar distribution in the caudate nucleus and substantia nigra. [(3)H]M binding was not affected by brief prior treatment of brain slices with (-)nipecotic acid or guvacine, two potent inhibitors of GABA uptake, indicating receptor binding specificity. Systemic administration of unlabeled muscimol interferred with binding of [(3)H]M binding subsequently administered in vitro, indicating that muscimol or a metabolite of it traverses the blood/brain barrier and binds to receptor sites, possibly in a manner competitive with [(3)H]M. [(3)H]M binding was greatest in the cerebellum. Quantitative analyses of the distribution of autoradiographic silver grains in the cerebellar cortex and dentate nucleus showed a general distribution of GABA receptors in the neuropil: molecular layer > granular layer > cerebellar nuclei > white matter. The highest binding of [(3)H]M occurred on the Purkinje cell somatic surface, in the basket axon formation surrounding the cell body and its axon initial segment, and somewhat less on basket and stellate cell somata. Neuroglial cells of the cortex have no [(3)H]M binding capacity; some glial cells in the cerebellar nuclei do. The role of glial cells in GABA uptake, metabolism, and GABA-receptor-mediated mechanisms remains to be clarified. The distribution of GABA receptors as indicated by [(3)H]M binding differs from the distribution of [(3)H]GABA uptake and GABA synthesizing and degradative sites.

摘要

蝇蕈醇是γ-氨基丁酸(GABA)的结构类似物和强效激动剂,其氚化形式被用于大鼠中枢神经系统中GABA受体的放射自显影定位。将[³H]蝇蕈醇([³H]M)与脑片一起孵育,或皮层内注射或注入眼内脑移植体中。正如[³H]M结合及放射自显影银粒所示,GABA受体在小脑皮质、大脑皮质和海马体中呈分层分布(数量依次减少);在尾状核和黑质中呈非分层分布。用两种强效GABA摄取抑制剂(-)尼古丁酸或胍可辛对脑片进行短暂预处理,并不影响[³H]M结合,表明受体结合具有特异性。体外随后给予未标记的蝇蕈醇进行全身给药,会干扰[³H]M结合,这表明蝇蕈醇或其代谢产物可穿过血脑屏障并与受体位点结合,可能是以与[³H]M竞争的方式。[³H]M结合在小脑中最强。对小脑皮质和齿状核中放射自显影银粒分布的定量分析表明,GABA受体在神经毡中呈总体分布:分子层>颗粒层>小脑核>白质。[³H]M的最高结合发生在浦肯野细胞体表面、围绕细胞体及其轴突起始段的篮状轴突结构中,在篮状细胞和星状细胞体上的结合稍少。皮质的神经胶质细胞没有[³H]M结合能力;小脑核中的一些胶质细胞有。胶质细胞在GABA摄取、代谢以及GABA受体介导机制中的作用仍有待阐明。由[³H]M结合所示的GABA受体分布与[³H]GABA摄取以及GABA合成和降解位点的分布不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d5ca/411393/9db779b6f6a6/pnas00014-0498-a.jpg

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