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劳拉西泮对脑多核糖体性质的影响。

Effects of lorazepam on the properties of brain polysomes.

作者信息

Tewari S, Gottschalk L A

机构信息

Department of Psychiatry and Human Behavior, College of Medicine, University of California, Irvine.

出版信息

Methods Find Exp Clin Pharmacol. 1992 Mar;14(2):79-84.

PMID:1598027
Abstract

This study determined the effects of acute administration of lorazepam (LRZ) on brain protein synthesis by examining the translational abilities of polysomal RNA under in vitro conditions compared to those produced by the CNS depressants, ethanol and pentobarbital. Lorazepam (2 mg/kg body weight), ethanol (4 g/kg body weight) or pentobarbital (40 mg/kg body weight) were given orally to 6-week old male Sprague-Dawley rats. Control groups were either untreated or received the vehicle sesame seed oil orally. The measurement of rectal temperature in each group before (baseline) and 60 min after drug administration showed no change in body temperature in the control or LRZ treated groups but there was a significant temperature drop in the ethanol and pentobarbital group. After 60 min of drug administration, experimental groups when compared to the controls showed significant inhibitions in the translational activities of the cerebral polysomes. The inhibition was most pronounced with polysomes from the LRZ treated group and was consistently observed over a 60 min time period. The findings suggest polysomal translation as one of the major sites of action of LRZ which is independent of changes in body temperature as compared to ethanol and pentobarbital. Since protein synthesis is known to play a key role in learning and memory, the observed inhibitory effects of LRZ may explain its interference with memory consolidation observed under experimental and clinical conditions.

摘要

本研究通过在体外条件下检测多聚核糖体RNA的翻译能力,与中枢神经系统抑制剂乙醇和戊巴比妥相比,确定了急性给予劳拉西泮(LRZ)对脑蛋白质合成的影响。将劳拉西泮(2mg/kg体重)、乙醇(4g/kg体重)或戊巴比妥(40mg/kg体重)口服给予6周龄雄性Sprague-Dawley大鼠。对照组未接受治疗或口服溶剂芝麻油。在给药前(基线)和给药后60分钟测量每组大鼠的直肠温度,结果显示对照组或LRZ治疗组的体温没有变化,但乙醇和戊巴比妥组体温显著下降。给药60分钟后,与对照组相比,实验组大脑多聚核糖体的翻译活性受到显著抑制。LRZ治疗组的多聚核糖体抑制最为明显,并且在60分钟的时间段内持续观察到。这些发现表明多聚核糖体翻译是LRZ的主要作用位点之一,与乙醇和戊巴比妥相比,它与体温变化无关。由于已知蛋白质合成在学习和记忆中起关键作用,LRZ观察到的抑制作用可能解释了其在实验和临床条件下对记忆巩固的干扰。

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