Department of Bioengineering, University of Pennsylvania, Philadelphia, Pennsylvania.
J Neurosci Res. 2013 Oct;91(10):1312-21. doi: 10.1002/jnr.23254. Epub 2013 Aug 6.
The facet joint is commonly associated with neck and low back pain and is susceptible to loading-induced injury. Although tensile loading of the cervical facet joint has been associated with inflammation and neuronal hyperexcitability, the mechanisms of joint loading-induced pain remain unknown. Altered brain-derived neurotrophic factor (BDNF) levels are associated with a host of painful conditions, but the role of BDNF in loading-induced joint pain remains undefined. Separate groups of rats underwent a painful cervical facet joint distraction or a sham procedure. Bilateral forepaw mechanical hypersensitivity was assessed and BDNF mRNA and protein levels were quantified in the dorsal root ganglion (DRG) and spinal cord at days 1 and 7. Facet joint distraction induced significant (P < 0.001) mechanical hypersensitivity at both time points. Painful joint distraction did not alter BDNF mRNA in the DRG compared with sham levels but did significantly increase (P < 0.016) BDNF protein expression over sham in the DRG at day 7. Painful distraction also significantly increased BDNF mRNA (P = 0.031) and protein expression (P = 0.047) over sham responses in the spinal cord at day 7. In a separate study, intrathecal administration of the BDNF-sequestering molecule trkB-Fc on day 5 after injury partially attenuated behavioral sensitivity after joint distraction and reduced pERK in the spinal cord at day 7 (P < 0.045). Changes in BDNF after painful facet joint injury and the effect of spinal BDNF sequestration in partially reducing pain suggest that BDNF signaling contributes to the maintenance of loading-induced facet pain but that additional cellular responses are also likely involved.
小关节通常与颈部和下背部疼痛有关,并且容易受到加载引起的损伤。虽然颈椎小关节的拉伸加载与炎症和神经元兴奋性过高有关,但关节加载引起的疼痛机制尚不清楚。脑源性神经营养因子 (BDNF) 水平的改变与许多疼痛状况有关,但 BDNF 在加载引起的关节疼痛中的作用仍未定义。分别有两组大鼠接受了疼痛性颈椎小关节分离或假手术。在第 1 天和第 7 天评估双侧前爪机械性超敏反应,并在背根神经节 (DRG) 和脊髓中定量测定 BDNF mRNA 和蛋白水平。小关节分离在两个时间点均引起明显的机械性超敏反应(P<0.001)。与假手术相比,疼痛性关节分离并未改变 DRG 中的 BDNF mRNA,但在第 7 天确实显着增加(P<0.016)DRG 中的 BDNF 蛋白表达。疼痛性分离也显着增加了脊髓中的 BDNF mRNA(P=0.031)和蛋白表达(P=0.047),与假手术相比在第 7 天。在另一项研究中,在损伤后第 5 天鞘内给予 BDNF 结合分子 trkB-Fc 可部分减轻关节分离后的行为敏感性,并在第 7 天降低脊髓中的 pERK(P<0.045)。疼痛性小关节损伤后 BDNF 的变化以及脊髓中 BDNF 结合的部分减轻疼痛的作用表明,BDNF 信号参与维持加载引起的小关节疼痛,但也可能涉及其他细胞反应。