Liu Da-Lu, Lu Na, Han Wen-Juan, Chen Rong-Gui, Cong Rui, Xie Rou-Gang, Zhang Yu-Fei, Kong Wei-Wei, Hu San-Jue, Luo Ceng
Institute of Neurosciences and Collaborative Innovation Center for Brain Science, Fourth Military Medical University, Xi'an 710032, China.
Department of Orthopedics, Xijing Hospital, Fourth Military Medical University, Xi'an 710032, China.
Sci Rep. 2015 Nov 18;5:16713. doi: 10.1038/srep16713.
Cervical radiculopathy represents aberrant mechanical hypersensitivity. Primary sensory neuron's ability to sense mechanical force forms mechanotransduction. However, whether this property undergoes activity-dependent plastic changes and underlies mechanical hypersensitivity associated with cervical radiculopathic pain (CRP) is not clear. Here we show a new CRP model producing stable mechanical compression of dorsal root ganglion (DRG), which induces dramatic behavioral mechanical hypersensitivity. Amongst nociceptive DRG neurons, a mechanically sensitive neuron, isolectin B4 negative Aδ-type (IB4(-) Aδ) DRG neuron displays spontaneous activity with hyperexcitability after chronic compression of cervical DRGs. Focal mechanical stimulation on somata of IB4(-) Aδ neuron induces abnormal hypersensitivity. Upregulated HCN1 and HCN3 channels and increased Ih current on this subset of primary nociceptors underlies the spontaneous activity together with neuronal mechanical hypersensitivity, which further contributes to the behavioral mechanical hypersensitivity associated with CRP. This study sheds new light on the functional plasticity of a specific subset of nociceptive DRG neurons to mechanical stimulation and reveals a novel mechanism that could underlie the mechanical hypersensitivity associated with cervical radiculopathy.
颈神经根病表现为异常的机械性超敏反应。初级感觉神经元感知机械力的能力形成机械转导。然而,这种特性是否会发生活动依赖性的可塑性变化以及是否是颈神经根病性疼痛(CRP)相关机械性超敏反应的基础尚不清楚。在这里,我们展示了一种新的CRP模型,该模型对背根神经节(DRG)产生稳定的机械压迫,可诱发显著的行为性机械性超敏反应。在伤害性DRG神经元中,一种机械敏感神经元,异凝集素B4阴性Aδ型(IB4(-) Aδ)DRG神经元在颈DRG慢性受压后表现出自发性活动且兴奋性增强。对IB4(-) Aδ神经元胞体进行局部机械刺激会诱发异常的超敏反应。该亚群初级伤害感受器上HCN1和HCN3通道上调以及Ih电流增加是自发性活动以及神经元机械性超敏反应的基础,这进一步导致了与CRP相关的行为性机械性超敏反应。本研究为伤害性DRG神经元特定亚群对机械刺激的功能可塑性提供了新的见解,并揭示了一种可能是颈神经根病相关机械性超敏反应基础的新机制。