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一种新型γ-氨基丁酸类似物曲酸胺的神经药理学

The neuropharmacology of a novel gamma-aminobutyric acid analog, kojic amine.

作者信息

Yarbrough G G, Williams M, Haubrich D R

出版信息

Arch Int Pharmacodyn Ther. 1979 Oct;241(2):266-79.

PMID:118713
Abstract

Kojic amine (KA; 2-aminomethyl-5-hydroxy-4H-pyran-4-one), a compound which shares some structural features with gamma-aminobutyric acid (GABA) and muscimol, has been examined in a variety of test systems for GABAmimetic activity. In several in vitro central nervous system receptor binding assays employing rat brain membrane preparations, KA exhibited selective activity to displace 3H-muscimol but with a relatively high IC50 of 4.4 muM. KA did not alter the binding of 3H-diazepam. Iontophoretically applied KA exerted a pronounced (comparable to GABA on the basis of ejection currents)i inhibition of the firing of cerebellar Purkinje cells and spontaneously active or glutamate-activated neurons in the cerebral cortex. The inhibitory effects of KA, which were longer lasting than those of GABA, were antagonized by bicuculline and enhanced in the presence of 2,4-diaminobutyric acid. On the isolated amphibian (Bufo marinus) spinal cord, KA was less than 1/3 as potent as GABA in depolarizing primary afferent terminals. In this preparation KA caused a marked decrease in the dorsal and ventral root potentials evoked by electrical stimulation of an adjacent or corresponding dorsal root. KA is a poor substrate for GABA uptake systems into rat brain synaptosomes, has no effect on GABA release in vitro, and does not inhibit GABA transaminase activity. Altogether, these data suggest that KA does have some GABAmimetic actions (which are perhaps restricted to hyperpolarizing post-synaptic GABA receptors) but also exerts other pharmacological effects as well.

摘要

曲酸胺(KA;2-氨甲基-5-羟基-4H-吡喃-4-酮)是一种与γ-氨基丁酸(GABA)和蝇蕈醇具有一些结构特征的化合物,已在多种测试系统中检测其拟GABA活性。在一些使用大鼠脑膜制剂的体外中枢神经系统受体结合试验中,KA表现出置换3H-蝇蕈醇的选择性活性,但IC50相对较高,为4.4 μM。KA不改变3H-地西泮的结合。离子电渗法应用的KA对小脑浦肯野细胞以及大脑皮层中自发活动或谷氨酸激活的神经元的放电有明显抑制作用(基于喷射电流与GABA相当)。KA的抑制作用比GABA持续时间更长,可被荷包牡丹碱拮抗,并在2,4-二氨基丁酸存在时增强。在离体两栖动物(海蟾蜍)脊髓上,KA使初级传入终末去极化的效力不到GABA的1/3。在此制剂中,KA使相邻或相应背根电刺激诱发的背根和腹根电位明显降低。KA是大鼠脑突触体中GABA摄取系统的不良底物,对体外GABA释放无影响,也不抑制GABA转氨酶活性。总之,这些数据表明KA确实具有一些拟GABA作用(可能仅限于使突触后GABA受体超极化),但也发挥其他药理作用。

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