摘要
本文旨在建立一种客观评价小鼠局灶性脑缺血神经症状的定量方法。在大脑中动脉阻塞诱导局灶性脑缺血后24 h,采用悬挂试验分别测定转动的平均角和优势角以及转动次数,并用爬板试验测定小鼠攀爬角度;分析定量测定指标与脑梗死体积、神经元密度的相关性,并与经典的行为学评价方法比较。还以此法观察抗脑缺血药pranlukast,4-氧-8-[对-(4-苯丁氧基)苯甲酰氨基]-2-(5-四氮基)4H-1-苯并吡喃半水化合物(ONO-1078)的作用。结果显示,脑缺血小鼠各项指标均有显著改变,定量评价总分与脑梗死体积、神经元密度减少密切相关,与经典行为学评分之间也密切相关。ONO-1078可显著抑制缺血损伤,并降低定量评价总分。因此,本方法可反映局灶性脑缺血神经症状变化,具有客观、定量、操作简便、无损伤的优点,并能用于评价抗脑缺血药物的作用。
The purpose of this study was to develop a quantitative and objective method for evaluating neurological deficits in mice with focal cerebral ischemia. After middle cerebral artery occlusion (MCAO) , the neurological deficits were evaluated 24 h later. We measured the mean angles, dominant angles and turns in a hanged test in which the mice were slicked on the wall, and the holding angles in an inclined plane test as well, Then we determined the cerebral infarct volumes, neuron density in hippocampus, cortex and subcorti-cal areas 24 h after MCAO. The correlations among infarct volume, neuron density and neurological deficits were analyzed. We also compared the quantitative method with two typical complex methods of behavioral assessment. The effect of pranlukast, 4-oxo-8-[p-(4-phenylbutyloxy) benzoylamino]-2-(tetrazol-5-yl)-4H-1-benzopyran hemihydrate (ONO-1078) , a neuroprotective agent, on ischemic injury was observed using this method. We found that the variables measured by both quantitative and typical behavioral methods significantly changed in the ischemic mice, and correlated with the infarct volumes and neuron densities. The quantitative variables well correlated with those of typical behavioral assessment, too. ONO-1078 inhibited ischemic injury and reduced the total scores of quantitative assessment. Thus, the quantitative method we developed is useful in evaluating neurological deficits of focal cerebral ischemia with the advantages of objectivity, quantification, simplicity and non-invasion, and can be used in the evaluation of neuroprotective effects of drugs.
出处
《生理学报》
CAS
CSCD
北大核心
2003年第6期742-747,共6页
Acta Physiologica Sinica
基金
This work was supported by the National Natural Science Foundation of China ( No. 39770270)