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利用 2-DG 脑图谱和 c-Fos 观察到小鼠 barrels 皮层的经验依赖性可塑性:MMP-9 KO 的影响。

Experience-dependent plasticity of the barrel cortex in mice observed with 2-DG brain mapping and c-Fos: effects of MMP-9 KO.

机构信息

Department of Molecular and Cellular Neurobiology, Nencki Institute, Warsaw, Poland.

出版信息

Cereb Cortex. 2012 Sep;22(9):2160-70. doi: 10.1093/cercor/bhr303. Epub 2011 Oct 20.

Abstract

Modifications of properties of the adult sensory cortex by elimination of sensory input (deprivation) serves as a model for studying plasticity in the adult brain. We studied the effects of short- and long-term deprivation (sparing one row of vibrissae) upon the barrel cortex. The response to stimulation (exploration of a new environment) of the spared row was examined with [14C]-2-deoxyglucose autoradiography and c-Fos immunohistochemistry. Both methods found large increases of the functional cortical representation of the spared row of vibrissae, extending into parts of the barrel cortex previously activated by the deprived vibrissae. With both methods, the greatest expansion of spared input was observed in cortical layer IV. In this way, we established a model, which was applied for examining involvement of matrix metalloproteinase 9 (MMP-9), upon experience-dependent cortical plasticity. MMP-9 is an enzyme implicated in plastic modification of the neuronal connections. We found that MMP-9 activity was increased in response to stimulation, and furthermore, MMP-9 knockout mice showed a modest but significant decrease of plasticity in layer IV with 2-DG mapping and in layers II/III with c-Fos mapping. Thus, in adult mouse brain experience-dependent plasticity is in part supported by the activity of MMP-9.

摘要

通过消除感觉输入(剥夺)来改变成年感觉皮层的特性,可作为研究成年大脑可塑性的模型。我们研究了短期和长期剥夺(保留一行触须)对桶状皮层的影响。通过[14C]-2-脱氧葡萄糖放射自显影和 c-Fos 免疫组织化学检测保留行的刺激反应(探索新环境)。这两种方法都发现了保留行触须的功能皮层代表的大量增加,延伸到以前由剥夺触须激活的部分桶状皮层。在这两种方法中,保留输入的最大扩展发生在皮质层 IV。通过这种方式,我们建立了一个模型,用于研究基质金属蛋白酶 9(MMP-9)在经验依赖性皮层可塑性中的作用。MMP-9 是一种参与神经元连接可塑性修饰的酶。我们发现 MMP-9 活性在刺激后增加,此外,MMP-9 基因敲除小鼠在 2-DG 映射的 IV 层和 c-Fos 映射的 II/III 层表现出适度但显著的可塑性降低。因此,在成年小鼠大脑中,经验依赖性可塑性部分由 MMP-9 的活性支持。

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