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首页> 外文期刊>Neurological Research: An Interdisciplinary Quarterly Journal >Transient ischemia-induced changes of excitatory amino acid carrier 1 in the ventral horn of the lumbar spinal cord in rabbits.
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Transient ischemia-induced changes of excitatory amino acid carrier 1 in the ventral horn of the lumbar spinal cord in rabbits.

机译:短暂性缺血引起的兔腰脊髓腹角兴奋性氨基酸载体1的变化。

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OBJECTIVES: To examine temporal changes of EAAC1 immunoreactivity and its protein level in the spinal ventral horn after transient ischemia in the rabbit to investigate the correlation between neuronal cell death and EAAC1 in the ventral horn of spinal cord. METHODS: White rabbits weighing 2.5-3.0 kg were anesthetized with a mixture of 2.5% isoflurane in 30% oxygen and 70% nitrous oxide, and the abdominal aortic artery below the left renal artery was occluded for 15 minutes. At designated times after reperfusion, the immunohistochemical and Western blot analysis for EAAC1 was conducted using tissues of the seventh lumbar spinal segment. RESULTS: EAAC1 immunoreactivity was detected in the neurons of the normal spinal cord. EAAC1 immunoreactivity and protein level reduced significantly 30 minutes after ischemia/reperfusion, but EAAC1 immunoreactivity and protein level again increased by 80% versus sham 3 hours after ischemia. At this time point, neurological defect in hindlimb was also detected. Thereafter, EAAC1 immunoreactivity and protein levels remained to be attenuated in the ventral horn of spinal cord until 48 hours after ischemia. CONCLUSION: The significant change in EAAC1 expression and motor defects at early time after transient spinal cord ischemia relates to the acute events following ischemia/reperfusion. These results indicate that EAAC1 has an important role in the modulation of glutamate homeostasis in ischemic neurons in the spinal ventral horn.
机译:目的:观察家兔短暂性脑缺血后脊髓腹角EAAC1免疫反应性及其蛋白水平的时空变化,探讨脊髓腹角神经元细胞死亡与EAAC1的相关性。方法:将2.5-3.0 kg的白兔用2.5%的异氟烷​​在30%的氧气和70%的一氧化二氮的混合物中麻醉,并将左肾动脉下方的腹主动脉封闭15分钟。在再灌注后的指定时间,使用第七腰椎节段的组织进行了EAAC1的免疫组织化学和蛋白质印迹分析。结果:在正常脊髓的神经元中检测到EAAC1免疫反应性。缺血/再灌注后30分钟,EAAC1免疫反应性和蛋白质水平显着降低,但与缺血3小时后的假手术相比,EAAC1免疫反应性和蛋白质水平再次提高80%。此时,还检测到后肢神经功能缺损。此后,EAAC1的免疫反应性和蛋白质水平在脊髓腹角一直保持减弱状态,直到缺血后48小时为止。结论:短暂性脊髓缺血后早期EAAC1表达和运动缺陷的显着变化与缺血/再灌注后的急性事件有关。这些结果表明,EAAC1在调节脊髓腹角缺血神经元中的谷氨酸稳态中具有重要作用。

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