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首页> 外文期刊>Journal of Neuroscience Research >Matrix metalloproteinase-3 expression profile differentiates adaptive and maladaptive synaptic plasticity induced by traumatic brain injury.
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Matrix metalloproteinase-3 expression profile differentiates adaptive and maladaptive synaptic plasticity induced by traumatic brain injury.

机译:基质金属蛋白酶3表达谱区分脑外伤诱导的适应性和适应不良的突触可塑性。

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The interaction between extracellular matrix (ECM) and regulatory matrix metalloproteinases (MMPs) is important in establishing and maintaining synaptic connectivity. By using fluid percussion traumatic brain injury (TBI) and combined TBI and bilateral entorhinal cortical lesion (TBI + BEC), we previously demonstrated that hippocampal stromelysin-1 (MMP-3) expression and activity increased during synaptic plasticity. We now report a temporal analysis of MMP-3 protein and mRNA response to TBI during both degenerative (2 day) and regenerative (7, 15 day) phases of reactive synaptogenesis. MMP-3 expression during successful synaptic reorganization (following unilateral entorhinal cortical lesion; UEC) was compared with MMP-3 expression when normal synaptogenesis fails (after combined TBI + BEC insult). Increased expression of MMP-3 protein and message was observed in both models at 2 days postinjury, and immuohistochemical (IHC) colocalization suggested that reactive astrocytes contribute to that increase. By 7 days postinjury, model differences in MMP-3 were observed. UEC MMP-3 mRNA was equivalent to control, and MMP-3 protein was reduced within the deafferented region. In contrast, enzyme mRNA remained elevated in the maladaptive TBI + BEC model, accompanied by persistent cellular labeling of MMP-3 protein. At 15 days survival, MMP-3 mRNA was normalized in each model, but enzyme protein remained higher than paired controls. When TBI + BEC recovery was enhanced by the N-methyl-D-aspartate antagonist MK-801, 7-day MMP-3 mRNA was significantly reduced. Similarly, MMP inhibition with FN-439 reduced the persistent spatial learning deficits associated with TBI + BEC insult. These results suggest that MMP-3 might differentially affect the sequential phases of reactive synaptogenesis and exhibit an altered pattern when recovery is perturbed.
机译:细胞外基质(ECM)和调节基质金属蛋白酶(MMP)之间的相互作用对于建立和维持突触连接至关重要。通过使用液体冲击性颅脑外伤(TBI)以及TBI和双侧内脏皮质损伤(TBI + BEC),我们先前证明了海马stromelysin-1(MMP-3)的表达和活性在突触可塑性期间增加。我们现在报告反应性突触发生的变性(2天)和再生(7、15天)阶段中MMP-3蛋白和mRNA对TBI的反应的时间分析。当正常突触发生失败时(合并TBI + BEC损伤后),将成功突触重组(单侧内脏皮质病变; UEC之后)中的MMP-3表达与MMP-3表达进行比较。两种模型在损伤后2天均观察到MMP-3蛋白表达和信息增加,并且免疫组化(IHC)共定位表明反应性星形胶质细胞促成这种增加。损伤后7天,观察到MMP-3的模型差异。 UEC MMP-3 mRNA与对照相当,MMP-3蛋白在脱除咖啡因的区域内减少。相反,在适应不良的TBI + BEC模型中,酶mRNA仍然升高,并伴有MMP-3蛋白的持续细胞标记。存活15天后,每个模型中的MMP-3 mRNA均已标准化,但酶蛋白仍高于配对对照。当N-甲基-D-天冬氨酸拮抗剂MK-801增强TBI + BEC的恢复时,7天MMP-3 mRNA显着降低。同样,用FN-439抑制MMP可减少与TBI + BEC损伤相关的持续性空间学习缺陷。这些结果表明,MMP-3可能会不同地影响反应性突触发生的连续阶段,并且在恢复受到干扰时会显示出变化的模式。

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