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Insulin-like growth factor-1 modulates Ca2+ homeostasis and apoptosis of cultured dorsal root ganglion neurons with excitotoxicity induced by glutamate.

机译:胰岛素样生长因子-1调节谷氨酸诱导的兴奋性毒性,使培养的背根神经节神经元发生Ca2 +稳态和凋亡。

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摘要

Insulin-like growth factor-1 (IGF-1) is a neurotrophic factor and a potent anti-apoptotic factor. IGF-1 plays an important role in promoting axonal growth from dorsal root ganglion (DRG) neurons and prevents apoptosis in DRG neurons. Whether IGF-1 could modulate Ca2+ homeostasis and apoptosis of sensory DRG neurons with excitotoxicity induced by glutamate (Glu) is still unknown. In the present study, primary cultured DRG neurons were used to determine the effects of IGF-1 on Ca2+ homeostasis and apoptosis of sensory DRG neurons with excitotoxicity induced by Glu. Intracellular Ca2+ concentration ([Ca2+]i) in isolated DRG neurons using the fluorescent Ca2+ indicator fura-3 was measured by confocal laser scanning microscope (CLSM). Procaspase-3 expression was detected by Western blot analysis. Application of 0.2 mmol/L Glu evoked an increase in [Ca2+]i, confirming the excitatory effect of Glu at this stage. The decrease of procaspase-3 expression levels after application of 0.2 mmol/L Glu suggested the apoptotic effects of Glu. These effects could be inhibited by the presence of IGF-1. In conclusion, we demonstrated that IGF-1 could modulate Ca2+ homeostasis and apoptosis of sensory DRG neurons with excitotoxicity induced by Glu. Both Ca2+ homeostasis and caspase-3 processing were implicated as the underlying neuroprotective mechanisms of IGF-1.
机译:胰岛素样生长因子-1(IGF-1)是神经营养因子和有效的抗凋亡因子。 IGF-1在促进背根神经节(DRG)神经元的轴突生长和防止DRG神经元凋亡中起重要作用。 IGF-1是否可以调节谷氨酸(Glu)引起的兴奋性毒性引起的DR2神经元的Ca2 +稳态和凋亡。在本研究中,原代培养的DRG神经元用于确定IGF-1对Glu诱导的兴奋性毒性的DR2神经元的Ca2 +稳态和凋亡的影响。通过共聚焦激光扫描显微镜(CLSM)测量使用荧光Ca2 +指示剂fura-3在分离的DRG神经元中的细胞内Ca2 +浓度([Ca2 +] i)。通过蛋白质印迹分析检测Procaspase-3表达。施用0.2 mmol / L Glu引起[Ca2 +] i的增加,证实了此阶段Glu的兴奋作用。应用0.2 mmol / L Glu后procaspase-3表达水平降低,提示Glu具有凋亡作用。 IGF-1的存在可以抑制这些作用。总之,我们证明了IGF-1可以通过Glu诱导的兴奋性毒性调节DR2神经元的Ca2 +稳态和凋亡。 Ca2 +稳态和caspase-3加工均被认为是IGF-1潜在的神经保护机制。

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