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首页> 外文期刊>Molecular pain >Spinal glial cell line-derived neurotrophic factor infusion reverses reduction of Kv4.1-mediated A-type potassium currents of injured myelinated primary afferent neurons in a neuropathic pain model
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Spinal glial cell line-derived neurotrophic factor infusion reverses reduction of Kv4.1-mediated A-type potassium currents of injured myelinated primary afferent neurons in a neuropathic pain model

机译:脊髓胶质细胞系衍生的神经营养因子输注逆转kV4.1介导的受损髓鞘初级传入神经元的kV4.1介导的型钾电流的减少

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摘要

High frequency spontaneous activity in injured primary afferents has been proposed as a pathological mechanism of neuropathic pain following nerve injury. Although spinal infusion of glial cell line-derived neurotrophic factor (GDNF) reduces the activity of injured myelinated A-fiber neurons after 5th lumbar (L5) spinal nerve ligation (SNL) in rats, the implicated molecular mechanism remains undetermined. The fast-inactivating transient A-type potassium current (IA) is an important determinant of neuronal excitability, and five voltage-gated potassium channel (Kv) alpha-subunits, Kv1.4, Kv3.4, Kv4.1, Kv4.2, and Kv4.3, display IA in heterologous expression systems. Here, we examined the effect of spinal GDNF infusion on IA and the expression of these five Kv mRNAs in injured A-fiber neurons using the in vitro patch clamp technique and in situ hybridization histochemistry. GDNF infusion reversed axotomy-induced reduction of the rheobase, elongation of first spike duration, and depolarization of the resting membrane potential. L5 SNL significantly reduced the current density of IA and GDNF treatment reversed the reduction. Among the examined Kv mRNAs, only the change in Kv4.1-expression was parallel with the change in IA after SNL and GDNF treatment. These findings suggest that GDNF should reduce the hyperexcitability of injured A-fiber primary afferents by IA recurrence. Among the five IA-related Kv channels, Kv4.1 should be a key channel, which account for this IA recurrence.
机译:受伤原发性发作的高频自发活性被提出为神经损伤后神经性疼痛的病理机制。尽管脊髓浸渍胶质细胞系衍生的神经营养因子(GDNF)减少了在第5次腰椎(L5)脊神经连接(SN1)之后的受伤的髓鞘A纤维神经元的活性,但含有的分子机制保持不确定。快速活化的瞬时型钾电流(IA)是神经元兴奋性的重要决定因素,以及五个电压门控钾通道(KV)α-亚基,KV1.4,KV3.4,KV4.1,KV4.2和KV4.3,在异源表达系统中显示IA。在这里,我们使用体外膜钳技术和原位杂交组织化学检测了脊髓GDNF输注对IA的影响和这五个kV mRNA在受伤的A-纤维神经元中的表达。 GDNF输注逆转腋窝诱导的Rheobase降低,第一尖峰持续时间的伸长,以及静止膜电位的去极化。 L5 SNL显着降低了IA的电流密度和GDNF处理的逆转。在检查的kV mRNA中,只有KV4.1表达的变化与SN1和GDNF处理后Ia的变化平行。这些发现表明,GDNF应通过IA复发降低受伤的A-FIRED初级传入的过度兴奋性。在五个相关的kV频道中,KV4.1应该是一个关键渠道,占该IA的次数。

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