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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Substance P receptor (neurokinin-1)-expressing neurons in lamina I of the spinal cord encode for the intensity of noxious stimulation: a c-Fos study in rat.
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Substance P receptor (neurokinin-1)-expressing neurons in lamina I of the spinal cord encode for the intensity of noxious stimulation: a c-Fos study in rat.

机译:脊髓板层I中表达P物质(神经激肽1)的神经元编码有害刺激的强度:一项在大鼠中进行的c-Fos研究。

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摘要

The substance P receptor neurokinin-1 is expressed by a subset of neurons in the rat spinal cord. We have combined immunostaining for Fos, a marker of noxious peripheral stimulation, and neurokinin-1 to examine whether nociceptive signals from particular peripheral tissues (skin, muscle or knee joint) or activity generated by nerve injury or formalin-induced inflammation are preferentially modulated by substance P. Our results indicate that superficial and deep spinal neurokinin-1-positive neurons process nociceptive information in markedly different ways. In lamina I, the number of double-labelled neurons was positively correlated with the intensity of the stimulus (defined by the total Fos count) and was not directly related to any particular peripheral target. However, in the deeper layers of the spinal cord (V-X), there was no such correlation, and stimulation of joint nociceptors and formalin-induced inflammation produced the greatest proportion of Foseurokinin-1 co-localization, suggesting a particular role for substance P in the mediation of joint pain and inflammatory hyperalgesia. Thus, lamina I neurokinin-1 receptor-bearing neurons appear to be involved in intensity discriminative aspects of pain, whereas the deep neurokinin-1 cells are involved in spatial localization or the detection of particular nociceptive submodalities.
机译:物质P受体Neurokinin-1由大鼠脊髓中的一部分神经元表达。我们将有害的外周刺激的标志物Fos和Neurokinin-1结合起来进行免疫染色,以检查来自特定外围组织(皮肤,肌肉或膝关节)的伤害性信号或神经损伤或福尔马林诱发的炎症产生的活性是否优先受到调节P物质。我们的结果表明,浅表和深层脊髓神经激肽1阳性神经元以明显不同的方式处理伤害性信息。在椎板I中,双标记神经元的数量与刺激强度(由总Fos计数定义)呈正相关,与任何特定的外周靶标均不直接相关。然而,在脊髓(VX)的更深层中,没有这种相关性,并且刺激关节伤害感受器和福尔马林诱导的炎症产生了最大比例的Fos /神经激肽-1共定位,提示该物质的特殊作用P在关节痛和炎性痛觉过敏的介导中。因此,带有薄层I神经激肽-1受体的神经元似乎参与了疼痛的强度鉴别方面,而深神经激肽-1细胞参与了空间定位或特定伤害性亚模式的检测。

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