首页> 美国卫生研究院文献>PLoS Clinical Trials >GDNF Selectively Induces Microglial Activation and Neuronal Survival in CA1/CA3 Hippocampal Regions Exposed to NMDA Insult through Ret/ERK Signalling
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GDNF Selectively Induces Microglial Activation and Neuronal Survival in CA1/CA3 Hippocampal Regions Exposed to NMDA Insult through Ret/ERK Signalling

机译:GDNF通过Ret / ERK信号选择性诱导暴露于NMDA损伤的CA1 / CA3海马区的小胶质细胞活化和神经元存活。

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摘要

The glial cell line-derived neurotrophic factor (GDNF) is a potent survival factor for several neuronal populations in different brain regions, including the hippocampus. However, no information is available on the: (1) hippocampal subregions involved in the GDNF-neuroprotective actions upon excitotoxicity, (2) identity of GDNF-responsive hippocampal cells, (3) transduction pathways involved in the GDNF-mediated neuroprotection in the hippocampus. We addressed these questions in organotypic hippocampal slices exposed to GDNF in presence of N-methyl-D-aspartate (NMDA) by immunoblotting, immunohistochemistry, and confocal analysis. In hippocampal slices GDNF acts through the activation of the tyrosine kinase receptor, Ret, without involving the NCAM-mediated pathway. Both Ret and ERK phosphorylation mainly occurred in the CA3 region where the two activated proteins co-localized. GDNF protected in a greater extent CA3 rather than CA1 following NMDA exposure. This neuroprotective effect targeted preferentially neurons, as assessed by NeuN staining. GDNF neuroprotection was associated with a significant increase of Ret phosphorylation in both CA3 and CA1. Interestingly, confocal images revealed that upon NMDA exposure, Ret activation occurred in microglial cells in the CA3 and CA1 following GDNF exposure. Collectively, this study shows that CA3 and CA1 hippocampal regions are highly responsive to GDNF-induced Ret activation and neuroprotection, and suggest that, upon excitotoxicity, such neuroprotection involves a GDNF modulation of microglial cell activity.
机译:胶质细胞源性神经营养因子(GDNF)是有效的生存因子,可用于包括海马在内的不同大脑区域中的多个神经元群体。但是,尚无以下信息:(1)兴奋性毒性后涉及GDNF-神经保护作用的海马亚区,(2)GDNF反应性海马细胞的身份,(3)GDNF介导的海马神经保护涉及的转导途径。我们通过免疫印迹,免疫组织化学和共聚焦分析,在存在N-甲基-D-天冬氨酸(NMDA)的情况下暴露于GDNF的器官型海马切片中解决了这些问题。在海马切片中,GDNF通过酪氨酸激酶受体Ret的激活而起作用,而不涉及NCAM介导的途径。 Ret和ERK的磷酸化都主要发生在两个活化蛋白共定位的CA3区。 NMDA暴露后,GDNF在更大程度上保护了CA3,而不是CA1。通过NeuN染色评估,这种神经保护作用优先针对神经元。 GDNF神经保护作用与CA3和CA1中Ret磷酸化的显着增加有关。有趣的是,共聚焦图像显示,NMDA暴露后,GDNF暴露后,CA3和CA1中的小胶质细胞中发生了Ret激活。总体而言,这项研究表明,CA3和CA1海马区对GDNF诱导的Ret激活和神经保护高度敏感,并表明,在兴奋性毒性作用下,这种神经保护涉及小胶质细胞活性的GDNF调节。

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