神经病理性疼痛
Wnt信号通路
神经科学
伤害感受器
脊髓
医学
突触可塑性
感觉神经元
周围神经损伤
感觉系统
伤害
坐骨神经
信号转导
受体
生物
细胞生物学
解剖
内科学
作者
Su Liu,Yuepeng Liu,Zhi‐Jiang Huang,Yankai Zhang,Angela Song,Pingchuan Ma,Xue‐Jun Song
出处
期刊:Pain
[Ovid Technologies (Wolters Kluwer)]
日期:2015-09-24
卷期号:156 (12): 2572-2584
被引量:74
标识
DOI:10.1097/j.pain.0000000000000366
摘要
In Brief Treating neuropathic pain continues to be a major clinical challenge and underlying mechanisms of neuropathic pain remain elusive. We have recently demonstrated that Wnt signaling, which is important in developmental processes of the nervous systems, plays critical roles in the development of neuropathic pain through the β-catenin–dependent pathway in the spinal cord and the β-catenin–independent pathway in primary sensory neurons after nerve injury. Here, we report that Wnt signaling may contribute to neuropathic pain through the atypical Wnt/Ryk signaling pathway in rats. Sciatic nerve injury causes a rapid-onset and long-lasting expression of Wnt3a, Wnt5b, and Ryk receptors in primary sensory neurons, and dorsal horn neurons and astrocytes. Spinal blocking of the Wnt/Ryk receptor signaling inhibits the induction and persistence of neuropathic pain without affecting normal pain sensitivity and locomotor activity. Blocking activation of the Ryk receptor with anti-Ryk antibody, in vivo or in vitro, greatly suppresses nerve injury-induced increased intracellular Ca2+ and hyperexcitability of the sensory neurons, and also the enhanced plasticity of synapses between afferent C-fibers and the dorsal horn neurons, and activation of the NR2B receptor and the subsequent Ca2+-dependent signals CaMKII, Src, ERK, PKCγ, and CREB in sensory neurons and the spinal cord. These findings indicate a critical mechanism underlying the pathogenesis of neuropathic pain and suggest that targeting the Wnt/Ryk signaling may be an effective approach for treating neuropathic pain. Ryk receptor-mediated Wnt signaling pathway is critical to sensitization of the peripheral sensory neurons and spinal dorsal horn neurons after nerve injury.
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