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- Objective: To investigate the effects of Panax notoginseng saponins on expression of excitatory amino acid receptor GluR2 subunit of AMPA receptor in the rat forebrain after intracerebral hemorrhage(ICH). 目的:研究三七總皂甙對腦出血大鼠前腦興奮性氨基酸受體AMPA受體亞基GluR2表達的作用。
- AIM:To investigate the expression of excitatory amino acids receptor NR1 subunit of NMDA receptor in the rat forebrain with intracerebral hemorrhage (ICH). 目的:研究三七總皂苷對腦出血大鼠前腦興奮性氨基酸受體NR1的作用。
- Effects of Panax notoginseng saponins on expression of excitatory amino acid receptor GluR2 subunit of AMPA receptor in rat forebrain after intracerebral hemorrhage 三七總皂甙對腦出血大鼠前腦興奮性氨基酸受體GluR2表達的作用
- Objective To study the excitatory amino acid (EAA) neurotransmitter concentration in bilirubin induced encephalopathy. 目的探討膽紅素腦病動(dòng)物模型制作及其腦組織中興奮性氨基酸(EAA)神經(jīng)遞質(zhì)變化。
- Objective:To observe the effects of electroacupuncture(EA) on excitatory amino acid(EAA) in brain tissue after cerebral ischemia reperfusion(CIR). 目的:研究電針對全腦缺血再灌注損傷腦組織興奮性氨基酸遞質(zhì)(EAA)的影響。
- Objective: Excitatory amino acid (EAA) an important neurotransmitter is released in excessive amounts from terminals of postsynaptic on traumatic brain injury. 目的:興奮性氨基酸(excitatory amino acid EAA)是中樞神經(jīng)系統主要的興奮性神經(jīng)遞質(zhì),腦損傷時(shí),神經(jīng)元突觸后大量釋放的興奮性氨基酸所產(chǎn)生的神經(jīng)毒性損傷是導致中樞神經(jīng)系統遲發(fā)性損傷的主要原因。
- Objective To investigate the effects of essential fatty acids (EFA) on the excitatory amino acid in tissues of rat brains. 目的 探討在大鼠腦發(fā)育期補充必需脂肪酸興奮性氨基酸 (EFA)對腦組織中EAA含量的影響。
- It has been reported that ischemic tolerance (IT) might be related to excitatory amino acid(EAA), adenosine, immediate early gene(IEG), heat shock protein(HSP) and oncogene B cell lymphoma-2(Bcl-2), etc. 目前腦IT的確切機制尚不清楚,認為可能與興奮性氨基酸(exicitatory amino acid,EAA)、腺苷、即早基因(immediate early gene,IEG)、熱休克蛋白(heat shock protein,HSP)及原癌基因B細胞淋巴瘤-2(B cell lymphoma-2,Bc1-2)等因素有關(guān)。
- It has been shown that the excitatory amino acids, such as Glutamic acid, play a key role in the pathologic process of nervous system diseases,e. g. retinal ischemia. 近年來(lái)的研究顯示,以谷氨酸為代表的興奮性氨基酸在缺血性視網(wǎng)膜損傷等神經(jīng)系統疾病病理中起關(guān)鍵作用。
- Plasma concentrations of excitatory amino acids serine, glycine, taurine and histidine in major depression. 血漿興奮性氨基酸,絲氨酸,甘氨酸,?;撬岷徒M氨酸的抑郁癥。
- Faden AI, Demediuk H, Panter SS, et al.The role of excitatory amino acids and NMDA receptors in traumatic brain injury [J]. 于明琨;朱誠;張光霽.;急性顱腦損傷患者腦脊液中興奮性和抑制性氨基酸含量改變及其臨床意義[J]
- Objective:To inquire and expound the neurotoxicity played by excitatory amino acids and fundamental research on antagonists during ischemic retinal damage. 目的:探討并論述視網(wǎng)膜缺血性損傷中興奮性氨基酸的神經(jīng)毒性作用和拮抗劑的基礎研究。
- CONCLUSION: The increase of excitatory amino acids in cortex may be induced by endotoxic shock and may play an important pathophysiological role in the development of shock. 結論:內毒素休克可引起腦興奮性氨基酸含量的持續過(guò)度增加,由此而導致的腦功能改變可能在休克發(fā)展及轉歸中起重要的病理生理作用。
- Keywords beta-amyloid;excitatory amino acid;dementia model;learning and memory ability;muscarinic receptor density;ZMS; 淀粉樣肽;興奮性氨基酸;癡呆模型;學(xué)習記憶功能;M受體密度;知母皂甙元;
- The mechanisms of injury include overload of calcium, injury of free radicals, production of excitability amino acid and nitrogen monoxidum and so on. 損傷的機制主要與氧自由基的損傷、鈣超載、興奮性氨基酸、一氧化氮等有關(guān)。
- The invention relates to a method for using JWA gene or protein to prepare the anti-Parkinson's disease excitability amino acid toxic function drug. 本發(fā)明公開(kāi)了JWA基因或蛋白在制備抑制帕金森病興奮性氨基酸毒性作用的藥物中的應用。
- Excitatory amino acid antagonists 興奮性氨基酸拮抗劑
- Excitatory amino acid transporter 2 興奮性氨基酸轉運體2
- Excitatory amino acid transporters 興奮性谷氨酸轉運體
- The pathophysiological mechanisms of ischemic cerebral injury involved in the release of excitatory amino acids, depolarization about the infarction, inflammatory reaction and neuron apoptosis. 缺血性腦損傷的病理生理機制包括興奮性氨基酸的釋放、梗死灶周?chē)O化、炎癥反應及神經(jīng)元凋亡等。