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原癌基因Fos、伤害感受与脊髓背角

Fos, nociception and the dorsal horn.

作者信息

Coggeshall Richard E

机构信息

Neuroscience and Cell Biology, The University of Texas Medical Branch, Galveston, TX 77555-1069, USA.

出版信息

Prog Neurobiol. 2005 Dec;77(5):299-352. doi: 10.1016/j.pneurobio.2005.11.002. Epub 2005 Dec 13.

Abstract

The protooncogene c-fos is rapidly activated after noxious stimuli to express the protein Fos in spinal dorsal horn neurons that are in the 'correct' locations for nociceptive information transfer. As such, therefore, mapping Fos expression in these neurons is at present the best global marker for efficiently locating populations of neurons in the awake animal that respond to nociceptive input. This allows, among other things, precise behavioral measurements to be correlated with Fos expression. Two arenas where mapping dorsal horn Fos expression has made a major impact are in the anatomy of nociceptive systems and as a useful assay for the analgesic properties of various therapeutic regimens. Also Fos expression is the only way to map populations of neurons that are responding to non-localized input such as withdrawal after addiction and vascular occlusion. Another insight is that it shows a clear activation of neurons in superficial 'pain-processing' laminae by innocuous stimuli after nerve lesions, a finding that presumably bears on the allodynia that often accompanies these lesions. It is to be understood, however, that the Fos localizations are not sufficient unto themselves, but the major function of these studies is to efficiently locate populations of cells in nociceptive pathways so that powerful anatomic and physiologic techniques can be brought to bear efficiently. Thus, the purpose of this review is to summarize the studies whose numbers are geometrically expanding that deal with Fos in the dorsal horn and the conclusions therefrom.

摘要

原癌基因c-fos在有害刺激后迅速被激活,从而在脊髓背角神经元中表达Fos蛋白,这些神经元处于传递伤害性信息的“正确”位置。因此,目前在这些神经元中绘制Fos表达图谱是在清醒动物中有效定位对伤害性输入有反应的神经元群体的最佳整体标记。这使得除其他外,能够将精确的行为测量与Fos表达相关联。绘制背角Fos表达图谱产生重大影响的两个领域是伤害性系统的解剖学以及作为各种治疗方案镇痛特性的有用检测方法。此外,Fos表达是绘制对非局部输入(如成瘾后戒断和血管闭塞后的退缩)有反应的神经元群体的唯一方法。另一个见解是,它显示神经损伤后无害刺激可使浅表“疼痛处理”层中的神经元明显激活,这一发现可能与这些损伤常伴随的异常性疼痛有关。然而,应该理解的是,Fos定位本身并不足够,这些研究的主要功能是有效定位伤害性通路中的细胞群体,以便能够有效地应用强大的解剖学和生理学技术。因此,本综述的目的是总结那些数量呈几何级数增长的、涉及背角Fos的研究及其得出的结论。

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