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来自延髓头端腹内侧的下行易化作用维持神经损伤诱导的中枢敏化。

Descending facilitation from the rostral ventromedial medulla maintains nerve injury-induced central sensitization.

作者信息

Vera-Portocarrero L P, Zhang E-T, Ossipov M H, Xie J Y, King T, Lai J, Porreca F

机构信息

Department of Pharmacology, University of Arizona, Health Sciences Center, 1501 North Campbell Avenue, Tucson, AZ 85724, USA.

出版信息

Neuroscience. 2006 Jul 21;140(4):1311-20. doi: 10.1016/j.neuroscience.2006.03.016. Epub 2006 May 2.

Abstract

Nerve injury can produce hypersensitivity to noxious and normally innocuous stimulation. Injury-induced central (i.e. spinal) sensitization is thought to arise from enhanced afferent input to the spinal cord and to be critical for expression of behavioral hypersensitivity. Descending facilitatory influences from the rostral ventromedial medulla have been suggested to also be critical for the maintenance, though not the initiation, of experimental neuropathic pain. The possibility that descending facilitation from the rostral ventromedial medulla is required for the maintenance of central sensitization was examined by determining whether ablation of mu-opioid receptor-expressing cells within the rostral ventromedial medulla prevented the enhanced expression of repetitive touch-evoked FOS within the spinal cord of animals with spinal nerve ligation injury as well as nerve injury-induced behavioral hypersensitivity. Rats received a single microinjection of vehicle, saporin, dermorphin or dermorphin-saporin into the rostral ventromedial medulla and 28 days later, underwent either sham or spinal nerve ligation procedures. Animals receiving rostral ventromedial medulla pretreatment with vehicle, dermorphin or saporin that were subjected to spinal nerve ligation demonstrated both thermal and tactile hypersensitivity, and showed significantly increased expression of touch-evoked FOS in the dorsal horn ipsilateral to nerve injury compared with sham-operated controls at days 3, 5 or 10 post-spinal nerve ligation. In contrast, nerve-injured animals pretreated with dermorphin-saporin showed enhanced behaviors and touch-evoked FOS expression in the spinal dorsal horn at day 3, but not days 5 and 10, post-spinal nerve ligation when compared with sham-operated controls. These results indicate the presence of nerve injury-induced behavioral hypersensitivity associated with nerve injury-induced central sensitization. Further, the results demonstrate the novel concept that once initiated, maintenance of nerve injury-induced central sensitization in the spinal dorsal horn requires descending pain facilitation mechanisms arising from the rostral ventromedial medulla.

摘要

神经损伤可导致对伤害性刺激和通常无害刺激的超敏反应。损伤诱导的中枢(即脊髓)致敏被认为源于脊髓传入输入的增强,并且对于行为超敏反应的表现至关重要。来自延髓头端腹内侧的下行易化作用也被认为对实验性神经病理性疼痛的维持(而非起始)至关重要。通过确定延髓头端腹内侧内表达μ-阿片受体的细胞消融是否能阻止脊髓神经结扎损伤动物脊髓内重复触摸诱发的FOS表达增强以及神经损伤诱导的行为超敏反应,来检验延髓头端腹内侧下行易化作用对中枢致敏维持的必要性。大鼠在延髓头端腹内侧接受单次微量注射赋形剂、皂草素、德莫啡肽或德莫啡肽-皂草素,28天后,进行假手术或脊髓神经结扎手术。接受赋形剂、德莫啡肽或皂草素预处理延髓头端腹内侧并接受脊髓神经结扎的动物表现出热超敏和触觉超敏,并且与假手术对照组相比,在脊髓神经结扎后第3、5或10天,神经损伤同侧背角中触摸诱发的FOS表达显著增加。相比之下,与假手术对照组相比,用德莫啡肽-皂草素预处理的神经损伤动物在脊髓神经结扎后第3天而非第5天和第10天,脊髓背角中行为增强且触摸诱发的FOS表达增加。这些结果表明存在与神经损伤诱导的中枢致敏相关的神经损伤诱导的行为超敏反应。此外,结果证明了一个新的概念,即一旦启动,脊髓背角中神经损伤诱导的中枢致敏的维持需要来自延髓头端腹内侧的下行疼痛易化机制。

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