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来自对前脑缺血具有耐受性的大鼠海马体的突触体ATP二磷酸水解酶的活性

Activity of synaptosomal ATP diphosphohydrolase from hippocampus of rats tolerant to forebrain ischemia.

作者信息

Schetinger M R, Barcellos C K, Barlem A, Zwestch G, Gubert A, Bertuol C, Arteni N, Dias R D, Sarkis J J, Netto C A

机构信息

Departamento de Bioquímica, Universidade Federal do Rio Grande do Sul, Porto Alegre, Brasil.

出版信息

Braz J Med Biol Res. 1994 May;27(5):1123-8.

PMID:8000332
Abstract

Cerebral ischemia causes cell death of vulnerable neurons in mammalian brain. Wistar adult rats (male and female, weighing 180-280 g) were submitted to 2 min, 10 min, or to 2 and 10 min (separated by a 24-h interval) of transient forebrain ischemia by the four-vessel occlusion method. Animals subjected to the longer ischemic episodes had massive necrosis of pyramidal CA1 cells of the hippocampus, while animals receiving double ischemia (2 + 10 min) showed neuronal tolerance to the ischemic insult. ATP-diphosphohydrolase activity from hippocampal synaptosomes was assayed in these three groups (N = 6 animals/group) under two conditions: no reperfusion and 5-min of reperfusion. The control values for ATPase and ADPase activities were 144.7 +/- 18.8 and 60.6 +/- 5.24 nmol Pi min-1 mg protein-1, respectively. The 10-min group without reperfusion showed an enhancement of approximately 20% for ATPase and ADPase activities. In reperfused rats, only the 2-min group had a 20% increase in both enzymatic activities. We suggest that modulation of ATP-diphosphohydrolase activity might be involved in molecular events that follow both ischemia and reperfusion.

摘要

脑缺血会导致哺乳动物大脑中易损神经元的细胞死亡。采用四血管闭塞法,将成年Wistar大鼠(雄性和雌性,体重180 - 280克)进行2分钟、10分钟或2分钟和10分钟(间隔24小时)的短暂性前脑缺血处理。经历较长缺血时间的动物海马锥体细胞CA1出现大量坏死,而接受双重缺血(2 + 10分钟)的动物表现出对缺血损伤的神经元耐受性。在无再灌注和5分钟再灌注这两种条件下,对这三组动物(每组6只)的海马突触体中的ATP二磷酸水解酶活性进行了测定。ATP酶和ADP酶活性的对照值分别为144.7±18.8和60.6±5.24 nmol Pi min-1 mg蛋白-1。未再灌注的10分钟组中,ATP酶和ADP酶活性增强了约20%。在再灌注的大鼠中,只有2分钟组的两种酶活性都增加了20%。我们认为,ATP二磷酸水解酶活性的调节可能参与了缺血和再灌注后的分子事件。

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