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呋塞米对惊厥性[3H]依布硒胺与小脑和皮质GABA(A)受体结合的双峰作用。

Bimodal action of furosemide on convulsant [3H]EBOB binding to cerebellar and cortical GABA(A) receptors.

作者信息

Maksay G, Korpi E R, Uusi-Oukari M

机构信息

Central Research Institute for Chemistry, Hungarian Academy of Sciences, Budapest.

出版信息

Neurochem Int. 1998 Oct;33(4):353-8. doi: 10.1016/s0197-0186(98)00038-2.

Abstract

Picrotoxinin-sensitive binding of a convulsant 4'-ethynyl-4-n[2,3-3H2]propyl-bicycloorthobenzoate ([3H]EBOB) to gamma-aminobutyric acid type A (GABA(A)) receptors was characterized in rat cerebrocortical and cerebellar membranes. The non-penetrating organic anions, furosemide and niflumate, in spite of their structural similarities, exerted differential effects on [3H]EBOB binding. Furosemide, a loop diuretic and a specific antagonist of a cerebellar GABA(A) receptor population, and GABA decreased the inhibitory potencies of each other in the cerebellum, while enhanced them in the cortex. The inhibitory potencies of niflumate, an anti-inflammatory and a chloride channel blocker. and GABA were enhanced by each other both in the cerebellum and cortex. Removal of chloride ions did not modify the effects of furosemide on [3H]EBOB binding. Furosemide antagonized the inhibition of cerebellar [3H]EBOB binding by a low pentobarbital concentration (0.1 mM), but enhanced the inhibition by a high concentration (0.5 mM). The results indicate that [3H]EBOB binding can be used to detect the known pharmacological features of the cerebellar granule cell-specific 16 subunit-containing GABA(A) receptors. The data extends the properties of furosemide antagonism of this receptor subtype to chloride insensitivity and interactions with barbiturate sites.

摘要

在大鼠大脑皮质和小脑膜中,对惊厥药4'-乙炔基-4-n[2,3-³H₂]丙基-双环邻苯二甲酸酯([³H]EBOB)与A型γ-氨基丁酸(GABA(A))受体的印防己毒素敏感性结合进行了表征。尽管呋塞米和尼氟灭酸这两种非渗透性有机阴离子结构相似,但它们对[³H]EBOB结合产生了不同的影响。呋塞米是一种袢利尿剂,也是小脑GABA(A)受体群体的特异性拮抗剂,它与GABA在小脑中相互降低彼此的抑制效力,而在皮质中则增强彼此的抑制效力。尼氟灭酸是一种抗炎药和氯离子通道阻滞剂,它与GABA在小脑和皮质中均相互增强彼此的抑制效力。去除氯离子并未改变呋塞米对[³H]EBOB结合的影响。呋塞米拮抗低浓度戊巴比妥(0.1 mM)对小脑[³H]EBOB结合的抑制作用,但增强高浓度戊巴比妥(0.5 mM)的抑制作用。结果表明,[³H]EBOB结合可用于检测小脑颗粒细胞特异性含16亚基的GABA(A)受体的已知药理学特征。这些数据将该受体亚型的呋塞米拮抗特性扩展至对氯离子不敏感以及与巴比妥酸盐位点的相互作用。

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