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首页> 外文期刊>Brain pathology >Glutamate receptor expression in multiple sclerosis lesions.
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Glutamate receptor expression in multiple sclerosis lesions.

机译:谷氨酸受体在多发性硬化病灶中的表达。

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摘要

Blockade of receptors for the excitatory neurotransmitter glutamate ameliorates neurological clinical signs in models of the CNS inflammatory demyelinating disease multiple sclerosis (MS). To investigate whether glutamate excitoxicity may play a role in MS pathogenesis, the cellular localization of glutamate and its receptors, transporters and enzymes was examined. Expression of glutamate receptor (GluR) 1, a Ca(++)-permeable ionotropic AMPA receptor subunit, was up-regulated on oligodendrocytes in active MS lesion borders, but Ca(++)-impermeable AMPA GluR2 subunit levels were not increased. Reactive astrocytes in active plaques expressed AMPA GluR3 and metabotropic mGluR1, 2/3 and 5 receptors and the GLT-1 transporter, and a subpopulation was immunostained with glutamate antibodies. Activated microglia and macrophages were immunopositive for GluR2, GluR4 and NMDA receptor subunit 1. Kainate receptor GluR5-7 immunostaining showed endothelial cells and dystrophic axons. Astrocyte and macrophage populations expressed glutamate metabolizing enzymes and unexpectedly the EAAC1 transporter, which may play a role in glutamate uptake in lesions. Thus, reactive astrocytes in MS white matter lesions are equipped for a protective role in sequestering and metabolizing extracellular glutamate. However, they may be unable to maintain glutamate at levels low enough to protect oligodendrocytes rendered vulnerable to excitotoxic damage because of GluR1 up-regulation.
机译:兴奋性神经递质谷氨酸受体的阻滞改善了中枢神经系统炎性脱髓鞘性疾病多发性硬化症(MS)模型中的神经系统临床症状。为了研究谷氨酸的兴奋性毒性是否可能在MS发病机理中起作用,研究了谷氨酸及其受体,转运蛋白和酶的细胞定位。谷氨酸受体(GluR)1,Ca(++)渗透性离子型AMPA受体亚基的表达在活跃MS病变边界的少突胶质细胞上调,但Ca(++)渗透性AMPA GluR2亚基水平没有增加。活性噬菌斑中的反应性星形胶质细胞表达AMPA GluR3和代谢型mGluR1、2 / 3和5受体以及GLT-1转运蛋白,并用谷氨酸抗体对亚群进行免疫染色。活化的小胶质细胞和巨噬细胞对GluR2,GluR4和NMDA受体亚基1呈免疫阳性。海因酸盐受体GluR5-7免疫染色显示内皮细胞和营养不良的轴突。星形胶质细胞和巨噬细胞群体表达谷氨酸代谢酶,出乎意料的是EAAC1转运蛋白,这可能在病变吸收谷氨酸中发挥作用。因此,MS白质病变中的反应性星形胶质细胞在隔离和代谢细胞外谷氨酸中起保护作用。然而,它们可能无法将谷氨酸维持在足够低的水平以保护由于GluR1上调而变得易受兴奋性毒性损害的少突胶质细胞。

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