首页> 外文OA文献 >Electrical stimulation of the superior sagittal sinus suppresses A-type K+ currents and increases P/Q- and T-type Ca2+ currents in rat trigeminal ganglion neurons
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Electrical stimulation of the superior sagittal sinus suppresses A-type K+ currents and increases P/Q- and T-type Ca2+ currents in rat trigeminal ganglion neurons

机译:高级矢状窦的电刺激抑制了α型K +电流,并增加大鼠三叉神经节神经元中的P / Q-和T型Ca2 +电流

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摘要

Abstract Background Migraine is a debilitating neurological disorder involving abnormal trigeminovascular activation and sensitization. However, the underlying cellular and molecular mechanisms remain unclear. Methods A rat model of conscious migraine was established through the electrical stimulation (ES) of the dural mater surrounding the superior sagittal sinus. Using patch clamp recording, immunofluorescent labelling, enzyme-linked immunosorbent assays and western blot analysis, we studied the effects of ES on sensory neuronal excitability and elucidated the underlying mechanisms mediated by voltage-gated ion channels. Results The calcitonin gene-related peptide (CGRP) level in the jugular vein blood and the number of CGRP-positive neurons in the trigeminal ganglia (TGs) were significantly increased in rats with ES-induced migraine. The application of ES increased actional potential firing in both small-sized IB4-negative (IB4 −) and IB4 + TG neurons. No significant changes in voltage-gated Na+ currents were observed in the ES-treated groups. ES robustly suppressed the transient outward K+ current (I A) in both types of TG neurons, while the delayed rectifier K+ current remained unchanged. Immunoblot analysis revealed that the protein expression of Kv4.3 was significantly decreased in the ES-treated groups, while Kv1.4 remained unaffected. Interestingly, ES increased the P/Q-type and T-type Ca2+ currents in small-sized IB4 − TG neurons, while there were no significant changes in the IB4 + subpopulation of neurons. Conclusion These results suggest that ES decreases the I A in small-sized TG neurons and increases P/Q- and T-type Ca2+ currents in the IB4 − subpopulation of TG neurons, which might contribute to neuronal hyperexcitability in a rat model of ES-induced migraine.
机译:摘要背景偏头痛是一种衰弱的神经系统疾病,涉及异常的三血管激活和敏化。然而,潜在的细胞和分子机制仍然不清楚。方法通过围绕优质矢状鼻窦的多云刺激建立了一种有意识偏头痛的大鼠模型。使用膜片钳录制,免疫荧光标记,酶联免疫吸附试验和Western印迹分析,我们研究了ES对感觉神经元兴奋性的影响,并阐明了由电压门通道介导的潜在机制。结果ES诱导的偏头痛大鼠在大鼠中显着增加了颈静脉血液中的降钙素基因相关肽(CGRP)水平和三叉神经节(TGS)中的CGRP阳性神经元。 ES增加了小型IB4阴性(IB4 - )和IB4 + TG神经元中的心血潜力烧制。在ES处理基团中没有观察到电压门控Na +电流的显着变化。 ES强大地抑制了两种类型的TG神经元的瞬态向外K +电流(I A),而延迟整流器K +电流保持不变。免疫斑分析显示,在ES处理的基团中,KV4.3的蛋白质表达显着降低,而KV1.4保持不受影响。有趣的是,ES增加了小型IB4 - TG神经元中的P / Q型和T型Ca2 +电流,而神经元的IB4 +亚泊素没有显着变化。结论这些结果表明ES降低了小尺寸TG神经元中的IA,并增加了TG神经元的IB4 - 亚泊素中的P / Q和T型Ca2 +电流,这可能导致ES诱导的大鼠模型中的神经元过度兴奋性偏头痛。

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