Department of Anatomy, Division of Neuroanatomy, Medical Faculty, Masaryk University, Brno, Czech Republic.
Neurosci Lett. 2011 Aug 26;501(2):86-91. doi: 10.1016/j.neulet.2011.06.052. Epub 2011 Jul 3.
Interleukin-10 prevents transition of a physiological inflammatory reaction to a pathological state that may result in neuropathic pain. We studied bilateral changes of IL-10 protein levels in L4-L5 and C7-C8 dorsal root ganglia (DRG) after a chronic constriction injury (CCI) of either L4-L5 spinal nerves (pCCI) or the sciatic nerve (dCCI). Rats undergoing pCCI or dCCI were left to survive for 1, 3, 7 or 14 d, sham-operated rats for 3 or 14 d. After the survival time, C7-C8 and L4-L5 DRG were removed bilaterally from naïve, operated, and sham-operated rats and IL-10 protein was detected by immunohistochemical staining and measured using ELISA analysis. Unilateral pCCI and dCCI induced a transient bilateral elevation in IL-10 protein level not only in the homonymous lumbar DRG but also in the heteronymous cervical DRG nonassociated with the spinal segments of constricted nerve. Sham operations also induced bilateral elevation of IL-10 protein in both homonymous and heteronymous DRG. Our experiments revealed that the more proximal is a nerve injury the more rapid is the initial increase and slower the subsequent decrease of IL-10 protein level in DRG. Changes of IL-10 protein in DRG nonassociated with damaged nerve could be related to a general neuroinflammatory reaction of the nervous system to injury and thereby promote potential of the DRG neurons for regenerating their axons following a conditioning lesion.
白细胞介素-10 可防止生理性炎症反应向病理性状态转变,从而导致神经病理性疼痛。我们研究了慢性缩窄性损伤(CCI)后 L4-L5 和 C7-C8 背根神经节(DRG)中白细胞介素-10 蛋白水平的双侧变化,CCI 作用于 L4-L5 脊神经(pCCI)或坐骨神经(dCCI)。接受 pCCI 或 dCCI 的大鼠分别存活 1、3、7 或 14 天,假手术大鼠存活 3 或 14 天。存活时间后,从未手术、手术和假手术大鼠双侧取出 C7-C8 和 L4-L5 DRG,并通过免疫组织化学染色检测 IL-10 蛋白,并通过 ELISA 分析进行测量。单侧 pCCI 和 dCCI 不仅在同侧腰椎 DRG 中,而且在与受压神经节段无关的对侧颈 DRG 中,短暂地双侧升高了 IL-10 蛋白水平。假手术也会在同侧和对侧 DRG 中引起 IL-10 蛋白的双侧升高。我们的实验表明,神经损伤越接近近端,DRG 中 IL-10 蛋白的初始增加越快,随后的下降越慢。与受损神经无关的 DRG 中 IL-10 蛋白的变化可能与神经系统对损伤的一般神经炎症反应有关,从而促进 DRG 神经元在条件性损伤后再生其轴突的潜力。