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脊髓背角胶状质中胶质纤维酸性蛋白(GFAP)表达强度与慢性机械性异常性疼痛程度之间的负相关关系。

Inverse relation between intensity of GFAP expression in the substantia gelatinosa and degree of chronic mechanical allodynia.

作者信息

Deumens Ronald, Jaken Robby J P, Knaepen Liesbeth, van der Meulen Inge, Joosten Elbert A J

机构信息

Pain Management and Research Center, Department of Anesthesiology, Academic Hospital Maastricht, Maastricht, The Netherlands.

出版信息

Neurosci Lett. 2009 Mar 13;452(2):101-5. doi: 10.1016/j.neulet.2008.12.062. Epub 2009 Jan 20.

Abstract

Glial cells are known to have a large impact on neuropathic pain conditions. Within the spinal cord, microglia rapidly respond to peripheral nerve injury, resulting in central sensitization and ultimately in the onset of enhanced pain behaviour. Astroglia respond with a short delay and are thought to contribute to the early maintenance of neuropathic pain. Nevertheless, it is unknown whether the roles of these glial cell types can be influenced by the chronicity of the neuropathology. Here, the persistent responses of astroglia and microglia to peripheral nerve injury within central pain networks in the upper dorsal horn laminae were studied. At 12 weeks after complete sciatic nerve injury, upregulation of glial fibrillary acidic protein (GFAP), but not complement receptor-3, could be detected in laminae II and III. Moreover, it was found that neuropathic animals with a higher degree of mechanical allodynia had a lower intensity of GFAP expression in lamina II (substantia gelatinosa). From these data we conclude that the role of astroglial responses in mechanical allodynia after peripheral nerve injury may be less straightforward as previously thought. Although astroglia are known to play a pro-nociceptive role in early neuropathic pain states, this role may shift to anti-nociception in more chronic pain states.

摘要

已知胶质细胞对神经性疼痛状况有很大影响。在脊髓内,小胶质细胞会迅速对外周神经损伤做出反应,导致中枢敏化,并最终引发疼痛行为增强。星形胶质细胞的反应稍有延迟,被认为与神经性疼痛的早期维持有关。然而,尚不清楚这些胶质细胞类型的作用是否会受到神经病理学慢性程度的影响。在此,研究了上背角层中央疼痛网络中星形胶质细胞和小胶质细胞对外周神经损伤的持续反应。在坐骨神经完全损伤后12周,在II层和III层可检测到胶质纤维酸性蛋白(GFAP)上调,但补体受体-3未上调。此外,还发现机械性异常性疼痛程度较高的神经性动物在II层(胶状质)中GFAP表达强度较低。从这些数据我们得出结论,星形胶质细胞反应在周围神经损伤后机械性异常性疼痛中的作用可能不像之前认为的那么直接。虽然已知星形胶质细胞在早期神经性疼痛状态中起促痛作用,但在更慢性的疼痛状态中,这一作用可能会转变为抗痛作用。

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