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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Global ischemic neuronal damage relates to behavioural deficits: a pharmacological approach.
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Global ischemic neuronal damage relates to behavioural deficits: a pharmacological approach.

机译:全局缺血性神经元损害与行为缺陷有关:一种药理学方法。

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Global cerebral ischemia leads morphologically to selective neuronal damage in the CA1 sector of the hippocampus and in the striatum and functionally to a deficit in spatial learning and memory in the water maze. The results of earlier studies which examined the relationship between neuronal damage and the deficits in the water maze were not clear cut. It has been observed, however, that neuroprotection reduces both the deficits in the water maze as well as the neuronal damage. The present study therefore approached the relationship between the neuronal damage and the deficits in water maze using pharmacological means. Global cerebral ischemia was induced in male Wistar rats by four-vessel occlusion for 20 min. Ischemic rats were treated with the N-methyl-D-aspartate receptor antagonist dextromethorphan, 50 mg/kg, with the calcium antagonist levemopamil, 30 mg/kg, with the radical scavenger EPC-K1, 10 mg/kg, or with solvent. Treatment with dextromethorphan or levemopamil reduced the deficit in spatial learning by limiting the increase in swim distance due to ischemia. Both substances also reduced the deficit in spatial memory by minimizing the ischemia-induced reduction in time spent in the quadrant of the former platform position during the probe trial. EPC-K1 had no influence on the ischemia-induced behavioural changes. Group comparisons demonstrated that the swim speed and the percentage of the swimming path along the sidewall were affected neither by ischemia nor by any of the treatments. Histological examination revealed neuronal damage in the hippocampus and in the striatum in all of the ischemic rats. Treatment with dextromethorphan or levemopamil reduced the hippocampal damage by 32% and 36%, respectively. In addition, dextromethorphan diminished the striatal damage about 78%. Correlation analysis demonstrated a correlation between the cumulative swim distance of all 20 escape trials and hippocampal damage (r = 0.65, P < 0.001) but not between swim distance and striatal damage (r = 0.14, P = 0.364). No correlation was found between quadrant time of the probe trial and either hippocampal damage (r = -0.21, P = 0.19) or striatal damage (r = -0.02, P = 0.889). The average percentage of the swimming path along the side wall related to the hippocampal damage (r = 0.28, P = 0.035) but not to the striatal damage (r = 0.05, P = 0.381). With respect to the average swim speed a correlation to striatal damage was observed (r = -0.69, P < 0.001) but not to hippocampal damage (r = -0.15, P = 0.168). These results clearly demonstrate that using the pharmacological approach it is possible to uncover certain correlations between functional deficits in the water maze and neuronal damage which are both due to global cerebral ischemia.
机译:在形态上,整体性脑缺血导致海马CA1区和纹状体的选择性神经元损伤,在功能上导致水迷宫中的空间学习和记忆不足。较早的研究结果不清楚神经元损伤与水迷宫缺陷之间的关系。然而,已经观察到,神经保护既减少了水迷宫中的缺陷,又减少了神经元的损害。因此,本研究使用药理学方法探讨了神经元损伤与水迷宫缺陷之间的关系。通过四支血管闭塞20分钟,在雄性Wistar大鼠中诱发全脑缺血。缺血大鼠用50 mg / kg的N-甲基-D-天冬氨酸受体拮抗剂右美沙芬,30 mg / kg的钙拮抗剂levemopamil,10 mg / kg的自由基清除剂EPC-K1或用溶剂治疗。右美沙芬或左旋莫帕米治疗可通过限制因缺血引起的游泳距离增加来减少空间学习的不足。两种物质还通过最小化局部缺血引起的探针试验过程中前平台位置象限中所花费时间的减少,来减少空间记忆的不足。 EPC-K1对缺血引起的行为改变没有影响。小组比较表明,游泳速度和沿着侧壁的游泳路径的百分比不受缺血或任何治疗的影响。组织学检查显示所有缺血大鼠的海马和纹状体神经元均受损。右美沙芬或左旋莫帕米治疗分别使海马损伤减少了32%和36%。此外,右美沙芬减少了纹状体损伤约78%。相关分析表明,所有20个逃脱试验的累积游泳距离与海马损伤之间存在相关性(r = 0.65,P <0.001),但游泳距离与纹状体损伤之间却没有相关性(r = 0.14,P = 0.364)。在探查试验的象限时间与海马损伤(r = -0.21,P = 0.19)或纹状体损伤(r = -0.02,P = 0.889)之间未发现相关性。沿着侧壁的游泳路径的平均百分比与海马损伤有关(r = 0.28,P = 0.035),但与纹状体损伤无关(r = 0.05,P = 0.381)。关于平均游泳速度,观察到与纹状体损伤相关(r = -0.69,P <0.001),但与海马损伤无关(r = -0.15,P = 0.168)。这些结果清楚地表明,使用药理学方法可以发现水迷宫中的功能缺陷与神经元损害之间的某些相关性,这两者都是由于整体性脑缺血引起的。

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