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L5 脊髓神经结扎后GDNF潜在的抗痛觉过敏机制;减轻触觉通路中神经肽Y的上调。

A potential anti-allodynic mechanism of GDNF following L5 spinal nerve ligation; Mitigation of NPY up-regulation in the touch sense pathway.

作者信息

Fukuoka T, Noguchi K

机构信息

Department of Anatomy & Neuroscience, Hyogo College of Medicine, Nishinomiya, Hyogo, Japan; Pain Mechanism Research Group, Hyogo College of Medicine, Nishinomiya, Hyogo, Japan.

Department of Anatomy & Neuroscience, Hyogo College of Medicine, Nishinomiya, Hyogo, Japan.

出版信息

Neuroscience. 2015 Sep 24;304:240-9. doi: 10.1016/j.neuroscience.2015.07.059. Epub 2015 Jul 26.

Abstract

Intrathecal delivery of glial cell line-derived neurotrophic factor (GDNF) reverses mechanical allodynia after 5th lumbar (L5) spinal nerve ligation (SNL). However, the molecular mechanism behind this process is not fully understood. Following sciatic nerve injury, primary afferent neurons in the injured dorsal root ganglion (DRG) begin to express neuropeptide Y (NPY) that is absent in normal DRG. The aim of the current study was to determine the relationship of this de novo expression of NPY and the anti-allodynic effect of GDNF. Following L5 SNL, 73% of neurons began to express NPY mRNA in the ipsilateral L5 DRG and robust NPY-immunoreactive fibers appeared in the ipsilateral GN where the touch-sense mediating A-fiber primary afferents from the hindpaw terminate. Seven-daylong intrathecal infusion of GDNF at the L5 DRG level, starting on day three when mechanical allodynia had fully developed, reversed once-established these changes. The GN neurons normally expressed NPY Y1 receptor, but not Y2, Y4, or Y5 receptors, and L5 SNL did not change the expression pattern. Bolus intracisternal injection of BIBP3226, a Y1 receptor antagonist, dose-dependently reversed mechanical allodynia. We demonstrated that GDNF reversed once-established mechanical allodynia as well as NPY induction in the touch-sense processing pathway. NPY could facilitate touch-sense processing by Y1 receptor in the gracile nucleus after peripheral nerve injury. GDNF may exert anti-allodynic effects through mitigation of this NPY up-regulation. The effectiveness of delayed treatment further indicates the therapeutic potential of GDNF on neuropathic pain.

摘要

鞘内注射胶质细胞源性神经营养因子(GDNF)可逆转第五腰段(L5)脊神经结扎(SNL)后的机械性异常性疼痛。然而,这一过程背后的分子机制尚未完全明确。坐骨神经损伤后,受损背根神经节(DRG)中的初级传入神经元开始表达正常DRG中不存在的神经肽Y(NPY)。本研究的目的是确定NPY的这种从头表达与GDNF的抗异常性疼痛作用之间的关系。L5 SNL后,73%的神经元开始在同侧L5 DRG中表达NPY mRNA,并且在同侧薄束核(GN)中出现了大量NPY免疫反应性纤维,后爪的触觉介导A纤维初级传入神经在此终止。从机械性异常性疼痛完全发展的第三天开始,在L5 DRG水平进行为期七天的鞘内GDNF输注,可逆转这些已经形成的变化。GN神经元通常表达NPY Y1受体,但不表达Y2、Y4或Y5受体,L5 SNL并未改变这种表达模式。脑池内推注Y1受体拮抗剂BIBP3226可剂量依赖性地逆转机械性异常性疼痛。我们证明,GDNF可逆转已经形成的机械性异常性疼痛以及触觉处理通路中的NPY诱导。周围神经损伤后,NPY可通过薄束核中的Y1受体促进触觉处理。GDNF可能通过减轻这种NPY上调发挥抗异常性疼痛作用。延迟治疗的有效性进一步表明了GDNF对神经性疼痛的治疗潜力。

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