首页> 外文期刊>Toxicology: An International Journal Concerned with the Effects of Chemicals on Living Systems >Aroclor 1254 selectively inhibits expression of glial GLT-1 glutamate transporter in the forebrain of chronically exposed adult rat
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Aroclor 1254 selectively inhibits expression of glial GLT-1 glutamate transporter in the forebrain of chronically exposed adult rat

机译:Aroclor 1254在慢性暴露成年大鼠的前脑中选择性抑制神经胶质GLT-1谷氨酸转运蛋白的表达

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摘要

Aroclor 1254, a commercially produced mixture of polychlorinated biphenyls, is known to cause many adverse conditions, including neurotoxicity. It has been recently postulated that upregulation of N-methyl-d-aspartate receptors (NMDARs) and enhanced glutamate signalling which leads to excitotoxicity, is the mechanism of Aroclor-induced neurotoxicity. To obtain insights into the mechanisms underlying glutamatergic overstimulation, we investigated the function and expression of sodium-dependent glutamate transporters which are known to regulate extracellular glutamate concentrations in the brain. Exposure to Aroclor 1254 was found to significantly lower the uptake of radioactive glutamate into gliosomal fractions obtained from adult rat brains. It also markedly decreased the expression of both protein and mRNA of GLT-1, the main glial glutamate transporter. This indicates that downregulation of GLT-1 may potentially lead to disturbances in glutamate clearance. The expression of GLAST, another astroglial glutamate transporter, was unchanged under conditions of Aroclor toxicity. Conversely, we observed enhanced glutamate uptake into nerve-endings fractions paralleled by increased EAAC1 protein expression. This may reflect the induction of protective mechanisms.
机译:已知商业生产的多氯联苯混合物Aroclor 1254会引起许多不利条件,包括神经毒性。最近据推测,N-甲基-d-天冬氨酸受体(NMDARs)的上调和导致兴奋性毒性的增强的谷氨酸信号传导是Aroclor诱导的神经毒性的机制。为了深入了解谷氨酸能过度刺激的潜在机制,我们研究了钠依赖性谷氨酸转运蛋白的功能和表达,该转运蛋白已知调节大脑中细胞外谷氨酸的浓度。发现暴露于Aroclor 1254会显着降低从成年大鼠大脑获得的胶质体组分中对放射性谷氨酸的吸收。它还显着降低了主要神经胶质谷氨酸转运蛋白GLT-1的蛋白质和mRNA表达。这表明GLT-1的下调可能潜在导致谷氨酸清除率的紊乱。在Aroclor毒性条件下,另一种星形胶质谷氨酸转运蛋白GLAST的表达未改变。相反,我们观察到谷氨酸对神经末梢的摄取增加,同时EAAC1蛋白表达增加。这可能反映了保护机制的诱导。

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