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Differential Calcium Signaling Mediated by Voltage-Gated Calcium Channels in Rat Retinal Ganglion Cells and Their Unmyelinated Axons

机译:电压门控钙通道介导的大鼠视网膜神经节细胞及其无髓鞘轴突中的差异钙信号。

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摘要

Aberrant calcium regulation has been implicated as a causative factor in the degeneration of retinal ganglion cells (RGCs) in numerous injury models of optic neuropathy. Since calcium has dual roles in maintaining homeostasis and triggering apoptotic pathways in healthy and injured cells, respectively, investigation of voltage-gated Ca channel (VGCC) regulation as a potential strategy to reduce the loss of RGCs is warranted. The accessibility and structure of the retina provide advantages for the investigation of the mechanisms of calcium signalling in both the somata of ganglion cells as well as their unmyelinated axons. The goal of the present study was to determine the distribution of VGCC subtypes in the cell bodies and axons of ganglion cells in the normal retina and to define their contribution to calcium signals in these cellular compartments. We report L-type Ca channel α1C and α1D subunit immunoreactivity in rat RGC somata and axons. The N-type Ca channel α1B subunit was in RGC somata and axons, while the P/Q-type Ca channel α1A subunit was only in the RGC somata. We patch clamped isolated ganglion cells and biophysically identified T-type Ca channels. Calcium imaging studies of RGCs in wholemounted retinas showed that selective Ca channel antagonists reduced depolarization-evoked calcium signals mediated by L-, N-, P/Q- and T-type Ca channels in the cell bodies but only by L-type Ca channels in the axons. This differential contribution of VGCC subtypes to calcium signals in RGC somata and their axons may provide insight into the development of target-specific strategies to spare the loss of RGCs and their axons following injury.
机译:在许多视神经病的损伤模型中,异常的钙调节被认为是视网膜神经节细胞(RGC)变性的原因。由于钙分别在维持健康和受损细胞的稳态和触发细胞凋亡途径中具有双重作用,因此有必要研究电压门控钙通道(VGCC)调节作为减少RGC损失的潜在策略。视网膜的可及性和结构为研究神经节细胞及其未髓鞘轴突中的钙信号传导机制提供了优势。本研究的目的是确定正常视网膜中细胞体和神经节细胞轴突中VGCC亚型的分布,并确定它们在这些细胞区室中对钙信号的贡献。我们报告大鼠RGC体细胞和轴突中的L型钙通道α1C和α1D亚基免疫反应性。 N型Ca通道α1B亚基存在于RGC体细胞和轴突中,而P / Q型Ca通道α1A亚基仅存在于RGC体细胞中。我们修补了分离的神经节细胞和通过生物物理方法鉴定的T型Ca通道。整个视网膜视网膜中RGC的钙成像研究表明,选择性Ca通道拮抗剂可减少细胞体中L,N,P / Q和T型Ca通道介导的去极化诱发的钙信号,但仅由L型Ca通道介导在轴突中。 VGCC亚型对RGC躯体及其轴突中钙信号的不同贡献可能为深入了解靶标特异性策略的发展提供了可能,以免受伤后RGC及其轴突丢失。

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