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脱氧皮质酮在中枢神经系统中的分布、代谢及生物活性

Distribution, metabolism and biological activity of deoxycorticosterone in the central nervous system.

作者信息

Kraulis I, Foldes G, Traikov H, Dubrovsky B

出版信息

Brain Res. 1975 Apr 25;88(1):1-14. doi: 10.1016/0006-8993(75)90942-7.

Abstract

Intravenously injected [1,2-3H]deoxycorticosterone (DOC) readily enters all parts of the central nervous system. In intact and eviscerated rats the highest concentration of radioactive label was recovered from areas corresponding to the reticular formation from the brain stem. In addrenalectomized animals, in addition to high brain stem concentration, there was also a marked increase in the uptake of radioactivity in the septum, hippocampus and pituitary. Data from the eviscerated rat point to a uniform distribution of [1,2-3H]DOC in neural tissues and suggest that the higher levels of radioactivity found in the brain stem may be due to a DOC metabolite with the chromatographic characteristics of allo-tetrahydro-DOC, an anaesthetic-type steroid. A decrease in the amplitude of evoked sciatic potentials in brain stem sites but not in the thalamic relay nucleus was observed in 52% of the cases studied, following the i.v. injection of 100-150 mug DOC.

摘要

静脉注射[1,2-³H]脱氧皮质酮(DOC)后,它能迅速进入中枢神经系统的各个部位。在完整和去内脏的大鼠中,放射性标记物的最高浓度出现在与脑干网状结构相对应的区域。在肾上腺切除的动物中,除了脑干浓度较高外,隔区、海马体和垂体中的放射性摄取也显著增加。去内脏大鼠的数据表明[1,2-³H]DOC在神经组织中分布均匀,提示在脑干中发现的较高放射性水平可能是由于一种具有别-四氢-DOC色谱特征的DOC代谢产物,这是一种麻醉型类固醇。在52%的研究病例中,静脉注射100 - 150微克DOC后,观察到脑干部位诱发坐骨神经电位的幅度降低,但丘脑中继核未出现这种情况。

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