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实验性癫癎时海马内兴奋性氨基酸受体对内阿片肽基因表达的影响
引用本文:任今鹏,黄志农,程介士.实验性癫癎时海马内兴奋性氨基酸受体对内阿片肽基因表达的影响[J].复旦学报(医学版),1999(1).
作者姓名:任今鹏  黄志农  程介士
作者单位:医学神经生物学国家重点实验室-上海医科大学基础医学院神经生物学教研室
摘    要:目的阐明在癫发作与发展中起着重要作用的脑内兴奋性氨基酸类递质和内阿片肽之间的关系。方法应用原位杂交方法观察了青霉素致及海马内微量注射NMDA受体阻断剂MK-801(5-methy1-10,11-dihydro-5H-dibenzo[a,d]cycloheptan-5,10-iminemaleate)和非NMDA受体阻断剂DNQX(6,7-dinitroquinoxaline-2,3-dione)后,大鼠海马内前脑啡肽原和前强啡肽原mRNA表达的变化。结果在青霉素致4h后,海马CA1区、CA3区、齿状回前脑啡肽原mRNA和海马CA3区、齿状回前强啡肽原mRNA的表达明显增加。在青霉素致前分别在海马内微量注射MK801(6μg)和DNQX(4μg),则在减弱发作的同时,海马内前脑啡肽原mRNA的表达明显减少,而前强啡肽原mRNA的表达继续增加。结论青霉素致引起大鼠脑内脑啡肽和强啡肽的变化可能和NMDA受体及非NMDA受体对其基因表达的调节有关

关 键 词:癫癎  海马  前强啡肽原mRNA  前脑啡肽原mRNA  MK-801  DNQX

Influence of Hippocampal Excitatory Amino Acid Receptors on Biosynthesis of Endogenous Opioid Peptides During Penicillin Induced Seizure
Ren Jinpeng,Huang Zhinong,Cheng Jieshi.Influence of Hippocampal Excitatory Amino Acid Receptors on Biosynthesis of Endogenous Opioid Peptides During Penicillin Induced Seizure[J].Fudan University Journal of Medical Sciences,1999(1).
Authors:Ren Jinpeng  Huang Zhinong  Cheng Jieshi
Abstract:Purpose To clarify the relationship between the hippocampal excitatory amino acids and endogenous opioid peptides involved in the pathogenesis of epilepsy. Methods In situ hybridization techniques were used to evaluate the influence of NMDA receptor antagonist MK-801(5-methyl-10,11-dihydro-5H-dibenzocycloheptan-5,10-iminemaleate) and non-NMDA receptor antagonist DNQX(6,7-dinitroquinoxaline-2,3-dione)microinjected into the hippocampus on preproenkephalin(PPE)mRNA and preprodynorphin(PPD)mRNA expression during penicillin induced epilepsy. Results From 4h after injecting penicillin into the hippocampus,hippocampal PPE mRNA and PPD mRNA levels were significantly enhanced.When MK-801 and DNQX were injected respectively into the hippocampus at 20min before administration of penicillin, there were the derease of PPE mRNA and further increase of PPD mRNA in the hippocampus. Conclusions NMDA receptor and non-NMDA receptor may regulated the biosynthesis of PPD and PPE in the hippocampus during seizure by alterations in gene expression.
Keywords:epilepsy  hippocampus  preproenkephalin mRNA  preprodynorphin mRNA  MK-801  DNQX
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