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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Nerve growth factor-mediated regulation of pain signalling and proposed new intervention strategies in clinical pain management
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Nerve growth factor-mediated regulation of pain signalling and proposed new intervention strategies in clinical pain management

机译:神经生长因子介导的疼痛信号调节,并在临床疼痛管理中提出新的干预策略

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摘要

Nerve growth factor (NGF) is the founding member of the neurotrophins family of proteins. It was discovered more than half a century ago through its ability to promote sensory and sympathetic neuronal survival and axonal growth during the development of the peripheral nervous system, and is the paradigmatic target-derived neurotrophic factor on which the neurotrophic hypothesis is based. Since that time, NGF has also been shown to play a key role in the generation of acute and chronic pain and in hyperalgesia in diverse pain states. NGF is expressed at high levels in damaged or inflamed tissues and facilitates pain transmission by nociceptive neurons through a variety of mechanisms. Genetic mutations in NGF or its tyrosine kinase receptor TrkA, lead to a congenital insensitivity or a decreased ability of humans to perceive pain. The hereditary sensory autonomic neuropathies (HSANs) encompass a spectrum of neuropathies that affect one's ability to perceive sensation. HSAN type IV and HSAN type V are caused by mutations in TrkA and NGF respectively. This review will focus firstly on the biology of NGF and its role in pain modulation. We will review neuropathies and clinical presentations that result from the disruption of NGF signalling in HSAN type IV and HSAN type V and review current advances in developing anti-NGF therapy for the clinical management of pain.
机译:神经生长因子(NGF)是神经营养蛋白家族的创始成员。半个多世纪以前就发现了它,因为它具有促进周围神经系统发育过程中感觉和交感神经元存活以及轴突生长的能力,是神经营养假说所基于的范式靶标衍生的神经营养因子。从那时起,NGF还被证明在急性和慢性疼痛的产生以及各种疼痛状态的痛觉过敏中起关键作用。 NGF在受损或发炎的组织中高水平表达,并通过多种机制促进伤害性神经元的疼痛传播。 NGF或其酪氨酸激酶受体TrkA的遗传突变会导致先天性过敏或人类感知疼痛的能力下降。遗传性感觉自主神经病(HSAN)包含一系列影响人感知感觉的神经病。 HSAN IV型和HSAN V型分别由TrkA和NGF中的突变引起。这篇综述将首先关注NGF的生物学及其在疼痛调节中的作用。我们将回顾由HSAN IV型和HSAN V型中NGF信号传导中断引起的神经病和临床表现,并回顾开发抗NGF治疗疼痛的临床方法的最新进展。

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