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首页> 外文期刊>European Journal of Pharmacology: An International Journal >Neuroprotective effect of L-kynurenine sulfate administered before focal cerebral ischemia in mice and global cerebral ischemia in gerbils.
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Neuroprotective effect of L-kynurenine sulfate administered before focal cerebral ischemia in mice and global cerebral ischemia in gerbils.

机译:小鼠局灶性脑缺血和沙鼠的全脑缺血前给予L-硫酸犬尿氨酸的神经保护作用。

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Excessive stimulation of N-methyl-D-aspartate (NMDA) receptors during ischemia contributes to apoptotic and excitotoxic nerve cell death. Kynurenic acid is a selective antagonist at the glycine co-agonist site of the NMDA receptor complex at low concentration, and it is a broad-spectrum excitatory amino acid receptor blocker at high concentration. Kynurenic acid provides neuroprotection in animal models of cerebral ischemia only at very high doses as it hardly crosses the blood-brain barrier. The neuroprotective effect of L-kynurenine sulfate, a precursor of kynurenic acid, was therefore studied because L-kynurenine readily crosses the blood-brain barrier. L-kynurenine sulfate was administered 15 min before permanent focal cerebral ischemia produced by electrocoagulation of the distal middle cerebral artery in mice. L-kynurenine sulfate induced a small decrease in the surface area of the brain infarction (10%, P<0.05) at 30 mg/kg i.p., and it caused strong reductions in infarct size (24-25%, P<0.01) at100 and 300 mg/kg i.p. Treatment of gerbils with L-kynurenine sulfate at 300 mg/kg i.p. 2 h before a 3-min bilateral carotid occlusion decreased (40%, P<0.01) the pyramidal cell loss in the CA1 area of the hippocampus. Furthermore, L-kynurenine sulfate inhibited the ischemia-induced hypermotility (77%, P<0.001), and decreased (50%, P<0.01) the ischemia-induced deterioration of spontaneous alternation, a measure of spatial memory, without altering the rectal temperature. In conclusion, the administration of L-kynurenine can elevate the brain concentration of kynurenic acid to neuroprotective levels, suggesting the potential clinical usefulness of L-kynurenine for the prevention of neuronal loss.
机译:缺血期间过度刺激N-甲基-D-天冬氨酸(NMDA)受体有助于凋亡和兴奋性毒性神经细胞死亡。在低浓度下,运动尿酸是NMDA受体复合物的甘氨酸共激动剂位点的选择性拮抗剂,在高浓度下它是广谱兴奋性氨基酸受体阻滞剂。犬尿酸仅在非常高的剂量下才可在脑缺血的动物模型中提供神经保护作用,因为它几乎没有穿过血脑屏障。因此,研究了尿嘧啶酸的前体硫酸左旋尿氨酸的神经保护作用,因为左旋尿氨酸很容易穿过血脑屏障。在小鼠大脑中部远端电凝产生永久性局灶性脑缺血之前15分钟给予L-硫酸犬尿氨酸。 L-犬尿氨酸硫酸盐在30 mg / kg ip时引起脑梗死表面积的小幅下降(10%,P <0.05),并在100时引起梗塞面积的强烈减少(24-25%,P <0.01)和300 mg / kg ip腹腔内用300 mg / kg L-硫酸犬尿氨酸处理沙鼠。在3分钟的双侧颈动脉阻塞减少(40%,P <0.01)之前2小时,海马CA1区的锥体细胞丢失。此外,L-犬尿氨酸硫酸盐抑制了缺血引起的自发性交替运动(77%,P <0.001),并减少了缺血性诱导的自发性交替恶化(50%,P <0.01)(50%,P <0.01),而不改变直肠温度。总之,L-犬尿氨酸的施用可以将脑尿酸的浓度提高到神经保护水平,表明L-犬尿氨酸在预防神经元丢失方面具有潜在的临床价值。

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