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首页> 外文期刊>Neurochemical research >Expression of glutamate decarboxylase (GAD) mRNA in the brain of bile duct ligated rats serving as a model of hepatic encephalopathy
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Expression of glutamate decarboxylase (GAD) mRNA in the brain of bile duct ligated rats serving as a model of hepatic encephalopathy

机译:胆管结扎大鼠脑内谷氨酸脱羧酶(GAD)mRNA的表达作为肝性脑病的模型

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Hepatic encephalopathy (HE) is a neurologic disorder that involves different pathophysiological mechanisms, including disturbances in the GABAergic neurotransmitter system. Albeit an overall increase in the level of neurotransmitter GABA has not been found in HE, alterations in GABA receptors and metabolism have been described. Moreover, it has been reported that bile duct ligated (BDL) rats, an animal model for the study of HE, exhibited an altered GABA biosynthesis involving preferentially the tricarboxylic (TCA) cycle. In this context it should be noted that the GABA synthesizing enzyme glutamate decarboxylase (GAD) is expressed in the brain in two isoforms GAD67 and GAD65, GAD65 being related to the synthesis of GABA that occurs via the TCA cycle and coupled to the vesicular pool of the neurotransmitter. The aim of the present study was to investigate whether changes in mRNA expression of GAD67 and GAD65 were related to the altered GABA biosynthesis previously observed. To study this, cerebral cortices and hippocampi were dissected from control and BDL rats, total mRNA was isolated and cDNA was synthesized by reverse transcription reaction. Subsequently samples were analyzed for gene expression of GAD67 and GAD65 by qPCR multiplex assay, using GAPDH as endogenous control. No changes in GAD67 and GAD65 mRNA expression between control and BDL rats either in cerebral cortex or in hippocampus were observed indicating that the HE condition did not lead to changes in GAD mRNA expression. However, other regulatory mechanism might be affecting GAD activity and to clarify this additional studies need to be conducted.
机译:肝性脑病(HE)是一种神经疾病,涉及不同的病理生理机制,包括GABA能神经递质系统的紊乱。尽管在HE中未发现神经递质GABA水平的总体增加,但已描述了GABA受体和代谢的改变。此外,已经报道胆管结扎(BDL)大鼠(一种用于HE的动物模型)表现出改变的GABA生物合成,其优先涉及三羧酸(TCA)循环。在这种情况下,应该注意的是,GABA合成酶谷氨酸脱羧酶(GAD)在大脑中以两种亚型GAD67和GAD65表达,GAD65与GCA的合成有关,这种合成是通过TCA循环发生的,并耦合到神经递质。本研究的目的是调查GAD67和GAD65 mRNA表达的变化是否与先前观察到的GABA生物合成改变有关。为了研究这一点,从对照和BDL大鼠中解剖大脑皮层和海马体,分离总mRNA并通过逆转录反应合成cDNA。随后,以GAPDH作为内源对照,通过qPCR多重分析分析样品中GAD67和GAD65的基因表达。对照组和BDL大鼠在大脑皮层或海马中未观察到GAD67和GAD65 mRNA表达的变化,表明HE状况未导致GAD mRNA表达的变化。但是,其他监管机制可能会影响GAD的活性,因此需要进行进一步的研究以阐明这一点。

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