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病毒介导的STZ诱导糖尿病大鼠背根神经节中Nav1.3基因敲低可减轻触觉异常性疼痛。

Virus-Mediated Knockdown of Nav1.3 in Dorsal Root Ganglia of STZ-Induced Diabetic Rats Alleviates Tactile Allodynia.

作者信息

Tan Andrew M, Samad Omar A, Dib-Hajj Sulayman D, Waxman Stephen G

机构信息

Department of Neurology, Yale University School of Medicine, New Haven, Connecticut, United States of America; and Center for Neuroscience and Regeneration Research, Veterans Affairs Connecticut Healthcare System, West Haven, Connecticut, United States of America.

出版信息

Mol Med. 2015 Jun 18;21(1):544-52. doi: 10.2119/molmed.2015.00063.

Abstract

Diabetic neuropathic pain affects a substantial number of people and represents a major public health problem. Available clinical treatments for diabetic neuropathic pain remain only partially effective and many of these treatments carry the burden of side effects or the risk of dependence. The misexpression of sodium channels within nociceptive neurons contributes to abnormal electrical activity associated with neuropathic pain. Voltage-gated sodium channel Nav1.3 produces tetrodotoxin-sensitive sodium currents with rapid repriming kinetics and has been shown to contribute to neuronal hyperexcitability and ectopic firing in injured neurons. Suppression of Nav1.3 activity can attenuate neuropathic pain induced by peripheral nerve injury. Previous studies have shown that expression of Nav1.3 is upregulated in dorsal root ganglion (DRG) neurons of diabetic rats that exhibit neuropathic pain. Here, we hypothesized that viral-mediated knockdown of Nav1.3 in painful diabetic neuropathy would reduce neuropathic pain. We used a validated recombinant adeno-associated virus (AAV)-shRNA-Nav1.3 vector to knockdown expression of Nav1.3, via a clinically applicable intrathecal injection method. Three weeks following vector administration, we observed a significant rate of transduction in DRGs of diabetic rats that concomitantly reduced neuronal excitability of dorsal horn neurons and reduced behavioral evidence of tactile allodynia. Taken together, these findings offer a novel gene therapy approach for addressing chronic diabetic neuropathic pain.

摘要

糖尿病性神经病理性疼痛影响着大量人群,是一个重大的公共卫生问题。现有的糖尿病性神经病理性疼痛临床治疗方法仅部分有效,而且其中许多治疗方法存在副作用负担或依赖风险。伤害性神经元中钠通道的错误表达会导致与神经病理性疼痛相关的异常电活动。电压门控钠通道Nav1.3产生具有快速再激发动力学的河豚毒素敏感钠电流,并且已被证明会导致受伤神经元的神经元兴奋性过高和异位放电。抑制Nav1.3活性可减轻由周围神经损伤引起的神经病理性疼痛。先前的研究表明,在表现出神经病理性疼痛的糖尿病大鼠的背根神经节(DRG)神经元中,Nav1.3的表达上调。在此,我们假设在疼痛性糖尿病神经病变中,病毒介导的Nav1.3基因敲低会减轻神经病理性疼痛。我们使用经过验证的重组腺相关病毒(AAV)-shRNA-Nav1.3载体,通过临床适用的鞘内注射方法来敲低Nav1.3的表达。载体给药三周后,我们观察到糖尿病大鼠的DRG中有显著的转导率,同时降低了背角神经元的神经元兴奋性,并减少了触觉异常性疼痛的行为证据。综上所述,这些发现为解决慢性糖尿病性神经病理性疼痛提供了一种新的基因治疗方法。

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本文引用的文献

1
Voltage-gated sodium channel function and expression in injured and uninjured rat dorsal root ganglia neurons.
Int J Neurosci. 2016;126(2):182-92. doi: 10.3109/00207454.2015.1004172. Epub 2015 Apr 7.
2
Transient receptor potential vanilloid 1 as a therapeutic target in analgesia.
Expert Opin Ther Targets. 2013 Jun;17(6):641-57. doi: 10.1517/14728222.2013.772580. Epub 2013 Feb 20.
4
Maladaptive dendritic spine remodeling contributes to diabetic neuropathic pain.
J Neurosci. 2012 May 16;32(20):6795-807. doi: 10.1523/JNEUROSCI.1017-12.2012.
6
Rac1-regulated dendritic spine remodeling contributes to neuropathic pain after peripheral nerve injury.
Exp Neurol. 2011 Dec;232(2):222-33. doi: 10.1016/j.expneurol.2011.08.028. Epub 2011 Sep 17.
7
Nav1.7 accumulates and co-localizes with phosphorylated ERK1/2 within transected axons in early experimental neuromas.
Exp Neurol. 2011 Aug;230(2):273-9. doi: 10.1016/j.expneurol.2011.05.005. Epub 2011 May 13.
8
Regeneration of axons in injured spinal cord by activation of bone morphogenetic protein/Smad1 signaling pathway in adult neurons.
Proc Natl Acad Sci U S A. 2011 May 10;108(19):E99-107. doi: 10.1073/pnas.1100426108. Epub 2011 Apr 25.
9
Treatment of diabetic sensory polyneuropathy.
Curr Treat Options Neurol. 2011 Apr;13(2):143-59. doi: 10.1007/s11940-011-0113-1.
10
Neuropathic pain in diabetes--evidence for a central mechanism.
Nat Rev Neurol. 2010 Aug;6(8):462-6. doi: 10.1038/nrneurol.2010.90. Epub 2010 Jul 13.

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