首页> 外文期刊>Acta Neuropathologica Communications >EphrinB/EphB forward signaling in Müller cells causes apoptosis of retinal ganglion cells by increasing tumor necrosis factor alpha production in rat experimental glaucomatous model
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EphrinB/EphB forward signaling in Müller cells causes apoptosis of retinal ganglion cells by increasing tumor necrosis factor alpha production in rat experimental glaucomatous model

机译:在大鼠实验性青光眼模型中,Müller细胞中的EphrinB / EphB正向信号传导通过增加肿瘤坏死因子α的产生而导致视网膜神经节细胞凋亡

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It was previously shown that EphB/ephrinB reverse signaling in retinal ganglion cells (RGCs) is activated and involved in RGC apoptosis in a rat chronic ocular hypertension (COH) model. In the present work, we first show that ephrinB/EphB forward signaling was activated in COH retinas, and RGC apoptosis in COH retinas was reduced by PP2, an inhibitor of ephrinB/EphB forward signaling. We further demonstrate that treatment of cultured Müller cells with ephrinB1-Fc, an EphB1 activator, or intravitreal injection of ephrinB1-Fc in normal rats induced an increase in phosphorylated EphB levels in these cells, indicating the activation of ephrinB/EphB forward signaling, similar to those in COH retinas. The ephrinB1-Fc treatment did not induce Müller cell gliosis, as evidenced by unchanged GFAP expression, but significantly up-regulated mRNA and protein levels of tumor necrosis factor-α (TNF-α) in Müller cells, thereby promoting RGC apoptosis. Production of TNF-α induced by the activation of ephrinB/EphB forward signaling was mediated by the NR2B subunit of NMDA receptors, which was followed by a distinct PI3K/Akt/NF-κB signaling pathway, as pharmacological interference of each step of this pathway caused a reduction of TNF-α production, thus attenuating RGC apoptosis. Functional analysis of forward and reverse signaling in such a unique system, in which ephrin and Eph exist respectively in a glial element and a neuronal element, is of theoretical importance. Moreover, our results also raise a possibility that suppression of ephrinB/EphB forward signaling may be a new strategy for ameliorating RGC apoptosis in glaucoma.
机译:先前已显示,在大鼠慢性高眼压(COH)模型中,视网膜神经节细胞(RGC)中的EphB / ephrinB反向信号被激活并参与RGC细胞凋亡。在本工作中,我们首先显示ephrinB / EphB正向信号在COH视网膜中被激活,而COH视网膜中的RGC细胞凋亡被ephrinB / EphB正向信号抑制剂PP2减少。我们进一步证明,在正常大鼠中,用ephrinB1-Fc,EphB1激活剂或玻璃体内注射ephrinB1-Fc对培养的Müller细胞进行处理可诱导这些细胞中磷酸化EphB的水平增加,表明ephrinB / EphB正向信号转导激活,类似对那些在COH视网膜中的人。 ephrinB1-Fc处理并未诱导Müller细胞胶质细胞增生,这由未改变的GFAP表达所证实,但是却显着上调了Müller细胞中肿瘤坏死因子-α(TNF-α)的mRNA和蛋白水平,从而促进了RGC凋亡。 ephrinB / EphB正向信号传导的激活诱导的TNF-α的产生是由NMDA受体的NR2B亚基介导的,其后是独特的PI3K / Akt /NF-κB信号传导途径,作为该途径每一步的药理干扰导致TNF-α产生减少,从而减弱RGC凋亡。在这样一个独特的系统中进行正向和反向信号转导的功能分析具有重要的理论意义,在该系统中,分别在神经胶质元件和神经元元件中存在ephrin和Eph。此外,我们的研究结果还提出抑制ephrinB / EphB正向信号传导可能是改善青光眼RGC细胞凋亡的新策略。

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