首页> 美国卫生研究院文献>The Journal of Neuroscience >Retinal Detachment-Induced Müller Glial Cell Swelling Activates TRPV4 Ion Channels and Triggers Photoreceptor Death at Body Temperature
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Retinal Detachment-Induced Müller Glial Cell Swelling Activates TRPV4 Ion Channels and Triggers Photoreceptor Death at Body Temperature

机译:视网膜脱离诱导的Müller胶质细胞膨胀激活体温下的TRPV4离子通道并触发光感受器死亡

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摘要

Using region-specific injection of hyaluronic acid, we developed a mouse model of acute retinal detachment (RD) to investigate molecular mechanisms of photoreceptor cell death triggered by RD. We focused on the transient receptor potential vanilloid 4 (TRPV4) ion channel, which functions as a thermosensor, osmosensor, and/or mechanosensor. After RD, the number of apoptotic photoreceptors was reduced by ∼50% in TRPV4KO mice relative to wild-type mice, indicating the possible involvement of TRPV4 activation in RD-induced photoreceptor cell death. Furthermore, TRPV4 expressed in Müller glial cells can be activated by mechanical stimuli caused by RD-induced swelling of these cells, resulting in release of the cytokine MCP-1, which is reported as a mediator of Müller glia-derived strong mediator for RD-induced photoreceptor death. We also found that the TRPV4 activation by the Müller glial swelling was potentiated by body temperature. Together, our results suggest that RD adversely impacts photoreceptor viability via TRPV4-dependent cytokine release from Müller glial cells and that TRPV4 is part of a novel molecular pathway that could exacerbate the effects of hypoxia on photoreceptor survival after RD.>SIGNIFICANCE STATEMENT Identification of the mechanisms of photoreceptor death in retinal detachment is required for establishment of therapeutic targets for preventing loss of visual acuity. In this study, we found that TRPV4 expressed in Müller glial cells can be activated by mechanical stimuli caused by RD-induced swelling of these cells, resulting in release of the cytokine MCP-1, which is reported as a mediator of Müller glia-derived strong mediator for RD-induced photoreceptor death. We also found that the TRPV4 activation by the Müller glial swelling was potentiated by body temperature. Hence, TRPV4 inhibition could suppress cell death in RD pathological conditions and suggests that TRPV4 in Müller glial cells might be a novel therapeutic target for preventing photoreceptor cell death after RD.
机译:使用透明质酸的区域特定注射,我们开发了小鼠急性视网膜脱离(RD)模型,以研究由RD触发的感光细胞死亡的分子机制。我们专注于瞬态受体电位香草酸4(TRPV4)离子通道,该通道用作热传感器,渗透传感器和/或机械传感器。 RD后,相对于野生型小鼠,TRPV4KO小鼠的凋亡光感受器数量减少了约50%,这表明TRPV4激活可能参与了RD诱导的光感受器细胞死亡。此外,Müller神经胶质细胞中表达的TRPV4可以被RD诱导的这些细胞肿胀引起的机械刺激激活,从而导致细胞因子MCP-1释放,据报道是Müller胶质细胞衍生的RD-导致光感受器死亡。我们还发现,体温增强了米勒神经胶质肿胀对TRPV4的激活作用。总之,我们的结果表明RD通过从Müller胶质细胞释放TRPV4依赖性细胞因子释放对光感受器活力产生不利影响,并且TRPV4是一种新的分子途径的一部分,该途径可能会增强缺氧对RD后光感受器存活的影响。>意义声明< / strong>必须确定视网膜脱离中光感受器死亡的机制,才能建立预防视力丧失的治疗靶标。在这项研究中,我们发现在Müller胶质细胞中表达的TRPV4可以被RD诱导的这些细胞肿胀引起的机械刺激激活,从而导致细胞因子MCP-1释放,据报道这是Müller胶质细胞来源的介质RD诱导的光感受器死亡的强介体。我们还发现,体温增强了米勒神经胶质肿胀对TRPV4的激活作用。因此,TRPV4的抑制可以抑制RD病理条件下的细胞死亡,并暗示Müller神经胶质细胞中的TRPV4可能是预防RD后感光细胞死亡的新型治疗靶点。

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