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Trigeminal ganglion neuron subtype-specific alterations of Ca V2.1 calcium current and excitability in a Cacna1a mouse model of migraine

机译:Cacna1a偏头痛模型中三叉神经节神经元亚型特异性Ca V2.1钙电流和兴奋性的改变

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摘要

Familial hemiplegic migraine type-1 (FHM1), a monogenic subtype of migraine with aura, is caused by gain-of-function mutations in Ca V2.1 (P/Q-type) calcium channels. The consequences of FHM1 mutations on the trigeminovascular pathway that generates migraine headache remain largely unexplored. Here we studied the calcium currents and excitability properties of two subpopulations of small-diameter trigeminal ganglion (TG) neurons from adult wild-type (WT) and R192Q FHM1 knockin (KI) mice: capsaicin-sensitive neurons without T-type calcium currents (CS) and capsaicin-insensitive neurons characterized by the expression of T-type calcium currents (CI-T). Small TG neurons retrogradely labelled from the dura are mostly CS neurons, while CI-T neurons were not present in the labelled population. CS and CI-T neurons express Ca V2.1 channels with different activation properties, and the Ca V2.1 channels are differently affected by the FHM1 mutation in the two TG neuron subtypes. In CI-T neurons from FHM1 KI mice there was a larger P/Q-type current density following mild depolarizations, a larger action potential (AP)-evoked calcium current and a longer AP duration when compared to CI-T neurons from WT mice. In striking contrast, the P/Q-type current density, voltage dependence and kinetics were not altered by the FHM1 mutation in CS neurons. The excitability properties of mutant CS neurons were also unaltered. Congruently, the FHM1 mutation did not alter depolarization-evoked CGRP release from the dura mater, while CGRP release from the trigeminal ganglion was larger in KI compared to WT mice. Our findings suggest that the facilitation of peripheral mechanisms of CGRP action, such as dural vasodilatation and nociceptor sensitization at the meninges, does not contribute to the generation of headache in FHM1.
机译:家族性偏瘫1型偏头痛(FHM1)是具有先兆的偏头痛的单基因亚型,是由Ca V2.1(P / Q型)钙通道中的功能获得性突变引起的。 FHM1突变对产生偏头痛的三叉神经血管通路的影响尚待进一步研究。在这里我们研究了成年野生型(WT)和R192Q FHM1敲入(KI)小鼠的两个小直径三叉神经节(TG)神经元的两个亚群的钙电流和兴奋性:没有T型钙电流的辣椒素敏感神经元( CS)和辣椒素不敏感神经元,其特征在于T型钙电流(CI-T)的表达。从硬脑膜逆行标记的小TG神经元大部分为CS神经元,而CI-T神经元不存在于标记人群中。 CS和CI-T神经元表达具有不同激活特性的Ca V2.1通道,并且在两个TG神经元亚型中,FHM1突变对Ca V2.1通道的影响不同。与野生型小鼠的CI-T神经元相比,FHM1 KI小鼠的CI-T神经元在轻度去极化后具有较大的P / Q型电流密度,较大的动作电位(AP)诱发的钙电流和较长的AP持续时间。与之形成鲜明对比的是,CS神经元中的FHM1突变并未改变P / Q型电流密度,电压依赖性和动力学。突变CS神经元的兴奋性特性也未改变。一致地,与WT小鼠相比,KI中FHM1突变不会改变去极化引起的硬脑膜CGRP释放,而三叉神经节的CGRP释放更大。我们的发现表明,CGRP作用的外围机制的促进,例如脑膜的硬脑膜血管舒张和伤害感受器敏化,不会导致FHM1头痛。

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