首页> 美国卫生研究院文献>British Journal of Pharmacology and Chemotherapy >A comparison of excitotoxic lesions of the basal forebrain by kainate quinolinate ibotenate N-methyl-D-aspartate or quisqualate and the effects on toxicity of 2-amino-5-phosphonovaleric acid and kynurenic acid in the rat.
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A comparison of excitotoxic lesions of the basal forebrain by kainate quinolinate ibotenate N-methyl-D-aspartate or quisqualate and the effects on toxicity of 2-amino-5-phosphonovaleric acid and kynurenic acid in the rat.

机译:海藻酸酯喹啉酸酯异丁酸酯N-甲基-D-天冬氨酸或喹喹酸酯对基底前脑的兴奋性毒性损害的比较以及对大鼠2-氨基-5-膦酰戊酸和犬尿酸的毒性影响。

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摘要

1. It has been suggested that an NMDA1 receptor subtype might be activated by N-methyl-D-aspartate (NMDA) and ibotenate and an NMDA2 subtype by NMDA or quinolinate, and that the NMDA2 site might be more susceptible to blockade by kynurenic acid. 2. Experiments were carried out to examine the ability of 2-amino-5-phosphonovaleric acid (AP5) and kynurenic acid to antagonize the neurotoxic properties of kainate, ibotenate, NMDA, quinolinate and quisqualate injected into the rat basal forebrain. 3. Following histological analysis of the injection sites, lesion volume was assessed parametrically. Each of the toxins except quisqualate was found to make lesions of parvocellular neurones within the basal forebrain with a relative order of potency: kainate much greater than quinolinate greater than ibotenate = NMDA. 4. Equimolar doses of AP5 abolished the toxicity produced by quinolinate and NMDA; toxicity to kainate and ibotenate was attenuated to approximately 40% of the toxin-alone condition. 5. The antagonistic properties of kynurenate were dose-dependent: equimolar kynurenate had no effect on quinolinate but attenuated the actions of ibotenate, kainate and NMDA; 2 x equimolar kynurenate had no effect on quinolinate or ibotenate but attenuated the toxicity of kainate and NMDA; and 3 x equimolar kynurenate had no effect on the toxicity of kainate or ibotenate, attenuated the actions of NMDA and abolished the toxic action of quinolinate. 6. The results are discussed in terms of the actions of the various toxins at different receptors, differentially sensitive to AP5 and kynurenate.
机译:1.有人提出NMDA1受体亚型可能被N-甲基-D-天门冬氨酸(NMDA)和异丁酸酯激活,而NMDA2亚型可能被NMDA或喹啉酸酯激活,并且NMDA2位点可能更容易被炔尿酸阻断。 2.进行了实验以检验2-氨基-5-膦酰卵磷脂酸(AP5)和运动尿酸拮抗注射入大鼠基底前脑的海藻酸盐,ibotenate,NMDA,喹啉酸盐和quisqualate的神经毒性。 3.对注射部位进行组织学分析后,通过参数评估病变体积。发现除准喹啉类以外的每种毒素均以相对强效的顺序使基底前脑内的细小细胞神经元病变:海藻酸盐比喹啉酸盐大得多,大于ibotenate = NMDA。 4.等摩尔剂量的AP5消除了喹啉酸酯和NMDA产生的毒性;对海藻酸盐和ibotenate的毒性已减弱至仅毒素状态的约40%。 5. Kureurenate的拮抗特性是剂量依赖性的:等摩尔的Kureurenate对喹啉酸酯无作用,但减弱了ibotenate,Kainate和NMDA的作用。 2 x等摩尔的Kynurenate对喹啉酸盐或ibotenate没有影响,但减弱了海藻酸盐和NMDA的毒性;和3 x等摩尔的Kynurenate对海藻酸盐或ibotenate的毒性没有影响,减弱了NMDA的作用,并取消了喹啉酸盐的毒性作用。 6.就各种毒素对AP5和Kureurenate敏感的不同受体的作用进行了讨论。

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