GABAergic Agonists Modulate the Glutamate Release from Frontal Cortex Synaptosomes of Rats with Experimental Autoimmune Encephalomyelitis.

Nicolás Fernández Hurst, N. L. Chanaday, G. A. Roth
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引用次数: 3

Abstract

Experimental autoimmune encephalomyelitis (EAE) is an inflammatory demyelinating disease that mimics many of the clinical and pathological features of multiple sclerosis. We have previously described a significant diminution in the GABAergic regulation of glutamate release from synaptosomes of EAE rats isolated during the acute stage of the disease. In order to explore the possible metabolic pathways responsible for this alteration, in this work we evaluate the direct effect of different GABAergic agonists on the glutamate release and concomitant synapsin I phosphorylation in synaptosomes from the frontal cortex of control and EAE animals. The results show that GABA as well as the GABA receptor agonists Muscimol (GABAA agonist) and Baclofen (GABAB agonist) caused a decrease in glutamate release in control rats paralleled by a similar reduction in synapsin I phosphorylation. Meanwhile synaptosomes from EAE animals are responsive only to Baclofen with respect to nontreated EAE synaptosomes, since glutamate release from the synaptosomes treated with Muscimol was similar to that observed in EAE rat synaptosomes which was already reduced as consequence of the disease. In the case of the benzodiazepines Diazepam and Clonazepam (GABAA allosteric agonists), both of them induced a reduction in glutamate release in synaptosomes from the CFA rats, effect that was only observed in synaptosomes of EAE rats treated with Clonazepam. In all cases both benzodiazepines showed a higher effect on synapsin I phosphorylation than in glutamate release. These results indicate that the extent of GABAergic modulation of presynaptic terminals depends on the type of agonist employed and this regulation is altered in the frontal cortex during the acute phase of EAE with respect to control animals.
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gaba能激动剂调节实验性自身免疫性脑脊髓炎大鼠额叶突触体谷氨酸释放
实验性自身免疫性脑脊髓炎(EAE)是一种炎症性脱髓鞘疾病,模仿多发性硬化症的许多临床和病理特征。我们之前已经描述了在疾病急性期分离的EAE大鼠突触体中谷氨酸释放的gaba能调节的显著减少。为了探索这种改变可能的代谢途径,本研究评估了不同gaba能激动剂对对照动物和EAE动物额叶皮质突触体中谷氨酸释放和伴随突触素I磷酸化的直接影响。结果表明,GABA以及GABA受体激动剂Muscimol (GABAA激动剂)和Baclofen (GABAB激动剂)引起对照大鼠谷氨酸释放减少,同时突触素I磷酸化也有类似的减少。与此同时,EAE动物的突触体只对巴氯芬有反应,而对未治疗的EAE突触体则没有反应,因为用Muscimol治疗的突触体释放的谷氨酸与EAE大鼠突触体中观察到的谷氨酸相似,而这些突触体已经因疾病而减少。在苯二氮卓类药物地西泮和氯硝西泮(GABAA变构激动剂)的情况下,它们都诱导CFA大鼠突触体中谷氨酸释放减少,这种作用仅在氯硝西泮治疗的EAE大鼠突触体中观察到。在所有情况下,两种苯二氮卓类药物对突触素I磷酸化的影响都高于谷氨酸释放。这些结果表明,突触前终末gaba能调节的程度取决于所使用的激动剂的类型,与对照动物相比,这种调节在EAE急性期在额叶皮层发生了改变。
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