首页> 外文期刊>Neuropathology: official journal of the Japanese Society of Neuropathology >Morphometric analysis of NADPH diaphorase reactive neurons in a rat model of focal excitotoxic striatal injury
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Morphometric analysis of NADPH diaphorase reactive neurons in a rat model of focal excitotoxic striatal injury

机译:大鼠局灶性兴奋毒性纹状体损伤模型中NADPH心肌黄递酶反应性神经元的形态计量学分析

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摘要

Excitotoxicity is the major component in neuropathological conditions, related to harmful action of imbalanced concentrations of glutamate and its agonists in the nervous tissue, ultimately resulting in cell death. In the present study, we evaluated the effects of an acute striatal lesion induced by a focal N-methyl-D-aspartate (NMDA) microinjection on the morphometry of NADPH diaphorase-reactive neurons (NADPH-d(+)), a subset of cells which release nitric oxide (NO) in the brain and are known by its resistance in pathological conditions. Two hundred and forty NADPH-d neurons from NMDA-lesioned striatum and contralateral counterpart were tridimensionally reconstructed at 1, 3 and 7 post-lesion days (PLDs). Cell body and dendritic field areas, length of dendrites by order and fractal dimension were analyzed. There were no significant morphometric differences when NADPH-d(+) neurons from lesioned and control striatal regions were compared among PLDs evaluated. Conversely, a conspicuous pallor in striatal neuropil reactivity was evidenced, especially in latter survival time. In addition, we observed a noticeable inflammatory response induced by NMDA. Our results suggest that NADPH-d+ neurons were spared from deleterious effects of acute NMDA excitotoxic damage in the striatum, reinforcing the notion that this cell group is selectively resistant to injury in the nervous system.
机译:兴奋性毒性是神经病理学疾病的主要成分,与神经组织中浓度不均的谷氨酸及其激动剂的有害作用有关,最终导致细胞死亡。在本研究中,我们评估了局灶性N-甲基-D-天冬氨酸(NMDA)显微注射诱导的急性纹状体病变对NADPH心肌黄递酶反应性神经元(NADPH-d(+))形态的影响。会在大脑中释放一氧化氮(NO)的细胞,其在病理条件下的抵抗力众所周知。在病变后1、3和7天三维重建了NMDA损伤纹状体和对侧对应物的240个NADPH-d神经元。分析了细胞体和树突区域,按顺序和分形维数计算的树突长度。比较来自病变和对照纹状体区域的NADPH-d(+)神经元时,在评估的PLD之间没有明显的形态学差异。相反,在纹状体神经纤维反应性方面表现出明显的苍白,尤其是在后者的存活时间内。另外,我们观察到由NMDA引起的明显的炎症反应。我们的结果表明,NADPH-d +神经元免于纹状体中急性NMDA兴奋性毒性损害的有害影响,从而增强了这一细胞群对神经系统损伤的选择性抵抗能力的观念。

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