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伴有或不伴有脑损伤的短暂性大脑中动脉闭塞后脑源性神经营养因子基因表达的调控

Regulation of brain-derived neurotrophic factor gene expression after transient middle cerebral artery occlusion with and without brain damage.

作者信息

Kokaia Z, Zhao Q, Kokaia M, Elmér E, Metsis M, Smith M L, Siesjö B K, Lindvall O

机构信息

Department of Neurology, University Hospital, Lund, Sweden.

出版信息

Exp Neurol. 1995 Nov;136(1):73-88. doi: 10.1006/exnr.1995.1085.

Abstract

Levels of mRNA for c-fos, nerve growth factor (NGF), brain-derived neurotrophic factor (BDNF), neurotrophin-3 (NT-3), TrkB, and TrkC were studied using in situ hybridization in the rat brain at different reperfusion times after unilateral middle cerebral artery occlusion (MCAO). Short-term (15 min) MCAO, which does not cause neuronal death, induced elevated BDNF mRNA expression confined to ipsilateral frontal and cingulate cortices outside the ischemic area. With a longer duration of MCAO (2 h), which leads to cortical infarction, the increase was more marked and elevated BDNF mRNA levels were also detected bilaterally in dentate granule cells and CA1 and CA3 pyramidal neurons. Maximum expression was found after 2 h of reperfusion. At 24 h BDNF mRNA expression had returned to control values. In the ischemic core of the parietal cortex only scattered neurons were expressing high levels of BDNF mRNA after 15 min and 2 h of MCAO. Analysis of different BDNF transcripts showed that MCAO induced a marked increase of exon III mRNA but only small increases of exon I and II mRNAs in cortex and hippocampus. In contrast to BDNF mRNA, elevated expression of c-fos mRNA was observed in the entire ipsilateral cerebral cortex, including the ischemic core, after both 15 min and 2 h of MCAO. Two hours of MCAO also induced transient, bilateral increases of NGF and TrkB mRNA levels and a decrease of NT-3 mRNA expression, confined to dentate granule cells. The upregulation of BDNF mRNA expression in cortical neurons after MCAO is probably triggered by glutamate through a spreading depression-like mechanism. The lack of response of the BDNF gene in the ischemic core may be due to suppression of signal transduction or transcription factor synthesis caused by the ischemia. The observed pattern of gene expression after MCAO agrees well with a neuroprotective role of BDNF in cortical neurons. However, elevated levels of NGF and BDNF protein could also increase synaptic efficacy in the postischemic phase, which may promote epileptogenesis.

摘要

在大鼠大脑中,通过原位杂交技术研究了单侧大脑中动脉闭塞(MCAO)后不同再灌注时间点c-fos、神经生长因子(NGF)、脑源性神经营养因子(BDNF)、神经营养素-3(NT-3)、TrkB和TrkC的mRNA水平。不导致神经元死亡的短期(15分钟)MCAO可诱导BDNF mRNA表达升高,局限于缺血区域外的同侧额叶和扣带回皮质。MCAO持续时间较长(2小时)导致皮质梗死时,这种增加更为明显,并且在齿状颗粒细胞以及CA1和CA3锥体神经元中双侧也检测到BDNF mRNA水平升高。再灌注2小时后发现表达量最高。在24小时时,BDNF mRNA表达已恢复至对照值。在MCAO 15分钟和2小时后顶叶皮质的缺血核心中,只有散在的神经元表达高水平的BDNF mRNA。对不同BDNF转录本的分析表明,MCAO诱导皮质和海马中外显子III mRNA显著增加,但外显子I和II mRNA仅小幅增加。与BDNF mRNA相反,在MCAO 1分钟和2小时后,在整个同侧大脑皮质包括缺血核心中均观察到c-fos mRNA表达升高。2小时的MCAO还诱导齿状颗粒细胞中NGF和TrkB mRNA水平短暂双侧增加以及NT-3 mRNA表达降低。MCAO后皮质神经元中BDNF mRNA表达上调可能是由谷氨酸通过类扩散性抑制机制触发的。缺血核心中BDNF基因缺乏反应可能是由于缺血导致信号转导或转录因子合成受到抑制。MCAO后观察到的基因表达模式与BDNF在皮质神经元中的神经保护作用非常吻合。然而,NGF和BDNF蛋白水平升高也可能增加缺血后阶段的突触效能,这可能促进癫痫发生。

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