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首页> 外文期刊>Journal of the Neurological Sciences: Official Bulletin of the World Federation of Neurology >Expression of RGMb in brain tissue of MCAO rats and its relationship with axonal regeneration
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Expression of RGMb in brain tissue of MCAO rats and its relationship with axonal regeneration

机译:RGMB在MCAO大鼠脑组织中的表达及其与轴突再生关系

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Abstract Objective To investigate the changes in the expression of repulsive guidance molecule b (RGMb) in brain tissue of rats with ischemic cerebral infarction and determine its relationship with axonal regeneration, synapse remodeling and magnetic resonance imaging (MRI) parameters with magnetic resonance diffusion tensor imaging as the dynamic continuous monitoring method in vivo , so as to explore the pathophysiological mechanism of the occurrence, development and prognosis of cerebral infarction. Methods Ninety Sprague-Dawley (SD) rats were randomly divided into six groups, namely control group, middle cerebral artery occlusion (MCAO) 12-h group, MCAO 24-h group, MCAO 48-h group, MCAO 7-day group and MCAO 10-day group, each of 15 animals. Rats were examined by head MRI at corresponding time points, followed by measurement of apparent diffusion coefficient (ADC) and fractional anisotropy (FA) values. Subsequently, brain tissues were taken to detect the expression of RGMb, axonal regeneration and synapse remodeling. Results After infarction, ADC and FA values of the infarcted core area were lower in rats of each group compared to those in rats of normal group ( P Conclusion After supratentorial cerebral infarction, the expressions of RGMb and synaptophysin were up-regulated in rats, neurofilament protein (NF-200) expression was decreased, and MRI parameters (ADC and FA values) were reduced, indicating that RGMb protein may be involved in the regeneration and remodeling of axons and synapses, and exert an important role in pathophysiological processes such as nerve regeneration disturbance and neuron apoptosis after cerebral ischemia injury. In vivo MRI can be a noninvasive technique to monitor the areas of cerebral infarction and the recovery of neurological function. Highlights ? To explore the pathophysiological mechanism of cerebral infarction. ? To investigate the changes in the expression of repulsive guidance molecule b. ? In vivo MRI can be a noninvasive technique to monitor the areas of cerebral infarction.
机译:摘要目的探讨缺血性脑梗死大鼠脑组织中脑组织表达的变化,并确定其与磁共振扩散张量成像的轴突再生,突触重新耦合和磁共振成像(MRI)参数的关系作为体内动态连续监测方法,以探讨脑梗死发生,发育和预后的病理生理机制。方法方法九十仙铲 - Dawley(SD)大鼠随机分为6组,即对照组,中脑动脉闭塞(MCAO)12-H组,MCAO 24-H组,MCAO 48-H集团,MCAO 7天组和MCAO 10天组,每个15只动物。在相应的时间点处通过头部MRI检查大鼠,然后测量表观扩散系数(ADC)和分数各向异性(FA)值。随后,采用脑组织检测RGMB,轴突再生和突触重塑的表达。结果后,与正常组大鼠相比,每组大鼠梗死核心区域的ADC和FA值较低(Suprateal脑梗死后P结论,RGMB和Sypaptophysin的表达在大鼠中,神经丝对表达进行上调蛋白质(NF-200)表达减少,并且减少了MRI参数(ADC和FA值),表明RGMB蛋白可以参与轴突和突触的再生和重塑,并在神经如神经等病理生理过程中发挥重要作用脑缺血损伤后的再生干扰和神经元细胞凋亡。体内MRI可以是监测脑梗死区域的非侵入性技术和神经功能的恢复。突出显示脑梗塞的病理生理机制。探讨了排斥引导分子B的表达。在体内MRI中可以是监测CE的区域的非侵入性技术梗塞。

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