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Phosphorylation of sodium channel Na(v)1.8 by p38 mitogen-activated protein kinase increases current density in dorsal root ganglion neurons.p38丝裂原活化蛋白激酶对钠通道Na(v)1.8的磷酸化增加了背根神经节神经元的电流密度。
J Neurosci. 2008 Mar 19;28(12):3190-201. doi: 10.1523/JNEUROSCI.4403-07.2008.
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The voltage-gated sodium channel Na(v)1.9 is an effector of peripheral inflammatory pain hypersensitivity.电压门控钠通道Na(v)1.9是外周炎性疼痛超敏反应的一个效应器。
J Neurosci. 2006 Dec 13;26(50):12852-60. doi: 10.1523/JNEUROSCI.4015-06.2006.
3
The role of sodium channels in neuropathic pain.钠通道在神经性疼痛中的作用。
Semin Cell Dev Biol. 2006 Oct;17(5):571-81. doi: 10.1016/j.semcdb.2006.10.009. Epub 2006 Oct 28.
4
Dissecting the role of sodium currents in visceral sensory neurons in a model of chronic hyperexcitability using Nav1.8 and Nav1.9 null mice.利用Nav1.8和Nav1.9基因敲除小鼠,剖析慢性兴奋性过高模型中内脏感觉神经元钠电流的作用。
J Physiol. 2006 Oct 1;576(Pt 1):257-67. doi: 10.1113/jphysiol.2006.113597. Epub 2006 Jul 20.
5
Neurotrophin-3 attenuates galanin expression in the chronic constriction injury model of neuropathic pain.神经营养因子-3减轻神经性疼痛慢性压迫损伤模型中甘丙肽的表达。
Neuroscience. 2006 Sep 15;141(4):2075-85. doi: 10.1016/j.neuroscience.2006.05.056. Epub 2006 Jul 14.
6
Involvement of the TTX-resistant sodium channel Nav 1.8 in inflammatory and neuropathic, but not post-operative, pain states.对河豚毒素耐受的钠通道Nav 1.8参与炎症性疼痛和神经性疼痛状态,但不参与术后疼痛状态。
Pain. 2006 Jul;123(1-2):75-82. doi: 10.1016/j.pain.2006.02.011. Epub 2006 Mar 20.
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Altered expression and function of sodium channels in large DRG neurons and myelinated A-fibers in early diabetic neuropathy in the rat.大鼠早期糖尿病性神经病变中大型背根神经节神经元和有髓鞘A纤维中钠通道的表达及功能改变
Biochem Biophys Res Commun. 2006 Jan 13;339(2):652-60. doi: 10.1016/j.bbrc.2005.11.057. Epub 2005 Nov 18.
8
Relationship between sodium channel NaV1.3 expression and neuropathic pain behavior in rats.大鼠钠通道NaV1.3表达与神经性疼痛行为之间的关系
Pain. 2005 Sep;117(1-2):145-53. doi: 10.1016/j.pain.2005.05.027.
9
Contribution of the tetrodotoxin-resistant voltage-gated sodium channel NaV1.9 to sensory transmission and nociceptive behavior.河豚毒素抗性电压门控钠通道NaV1.9对感觉传递和伤害性感受行为的作用。
Proc Natl Acad Sci U S A. 2005 Jun 28;102(26):9382-7. doi: 10.1073/pnas.0501549102. Epub 2005 Jun 17.
10
trkA is expressed in nociceptive neurons and influences electrophysiological properties via Nav1.8 expression in rapidly conducting nociceptors.TrkA在伤害性感受神经元中表达,并通过快速传导伤害感受器中Nav1.8的表达影响电生理特性。
J Neurosci. 2005 May 11;25(19):4868-78. doi: 10.1523/JNEUROSCI.0249-05.2005.

神经营养因子-3可显著降低与神经性疼痛状态相关的钠通道表达。

Neurotrophin-3 significantly reduces sodium channel expression linked to neuropathic pain states.

作者信息

Wilson-Gerwing Tracy D, Stucky Cheryl L, McComb Geoffrey W, Verge Valerie M K

机构信息

Department of Anatomy and Cell Biology, Cameco MS Neuroscience Research Center University of Saskatchewan, Saskatoon, Saskatchewan, Canada.

出版信息

Exp Neurol. 2008 Oct;213(2):303-14. doi: 10.1016/j.expneurol.2008.06.002. Epub 2008 Jun 14.

DOI:10.1016/j.expneurol.2008.06.002
PMID:18601922
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2751854/
Abstract

Neuropathic pain resulting from chronic constriction injury (CCI) is critically linked to sensitization of peripheral nociceptors. Voltage gated sodium channels are major contributors to this state and their expression can be upregulated by nerve growth factor (NGF). We have previously demonstrated that neurotrophin-3 (NT-3) acts antagonistically to NGF in modulation of aspects of CCI-induced changes in trkA-associated nociceptor phenotype and thermal hyperalgesia. Thus, we hypothesized that exposure of neurons to increased levels of NT-3 would reduce expression of Na(v)1.8 and Na(v)1.9 in DRG neurons subject to CCI. In adult male rats, Na(v)1.8 and Na(v)1.9 mRNAs are expressed at high levels in predominantly small to medium size neurons. One week following CCI, there is reduced incidence of neurons expressing detectable Na(v)1.8 and Na(v)1.9 mRNA, but without a significant decline in mean level of neuronal expression, and similar findings observed immunohistochemically. There is also increased accumulation/redistribution of channel protein in the nerve most apparent proximal to the first constriction site. Intrathecal infusion of NT-3 significantly attenuates neuronal expression of Na(v)1.8 and Na(v)1.9 mRNA contralateral and most notably, ipsilateral to CCI, with a similar impact on relative protein expression at the level of the neuron and constricted nerve. We also observe reduced expression of the common neurotrophin receptor p75 in response to CCI that is not reversed by NT-3 in small to medium sized neurons and may confer an enhanced ability of NT-3 to signal via trkA, as has been previously shown in other cell types. These findings are consistent with an analgesic role for NT-3.

摘要

慢性压迫性损伤(CCI)导致的神经性疼痛与外周伤害感受器的敏化密切相关。电压门控钠通道是这种状态的主要促成因素,其表达可被神经生长因子(NGF)上调。我们之前已经证明,神经营养因子-3(NT-3)在调节CCI诱导的trkA相关伤害感受器表型变化和热痛觉过敏方面对NGF起拮抗作用。因此,我们推测将神经元暴露于升高水平的NT-3会降低遭受CCI的背根神经节(DRG)神经元中Na(v)1.8和Na(v)1.9的表达。在成年雄性大鼠中,Na(v)1.8和Na(v)1.9 mRNA主要在中小型神经元中高水平表达。CCI一周后,表达可检测到的Na(v)1.8和Na(v)1.9 mRNA的神经元发生率降低,但神经元表达的平均水平没有显著下降,免疫组织化学观察到类似结果。在第一个缩窄部位近端最明显的神经中,通道蛋白的积累/重新分布也增加。鞘内注射NT-3可显著减弱对侧以及最显著的是CCI同侧Na(v)1.8和Na(v)1.9 mRNA的神经元表达,对神经元和缩窄神经水平的相对蛋白表达有类似影响。我们还观察到,在中小型神经元中,对CCI的反应中常见神经营养因子受体p75的表达降低,NT-3不能使其逆转,这可能赋予NT-3通过trkA发出信号的增强能力,正如之前在其他细胞类型中所显示的那样。这些发现与NT-3的镇痛作用一致。