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DCC Is Required for the Development of Nociceptive Topognosis in Mice and Humans

机译:DCC是小鼠和人类伤害性拓扑学发展的必要条件

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Summary Avoidance of environmental dangers depends on nociceptive topognosis, or the ability to localize painful stimuli. This is proposed to rely on somatotopic maps arising from topographically organized point-to-point connections between the body surface and?the CNS. To determine the role of topographic organization of spinal ascending projections in nociceptive topognosis, we generated a conditional knockout mouse lacking expression of the netrin1 receptor DCC in the spinal cord. These mice have an increased number of ipsilateral spinothalamic connections and exhibit aberrant activation of the somatosensory cortex in response to unilateral stimulation. Furthermore, spinal cord-specific Dcc knockout animals displayed mislocalized licking responses to formalin injection, indicating impaired topognosis. Similarly, humans with DCC mutations experience bilateral sensation evoked by unilateral somatosensory stimulation. Collectively, our results constitute functional evidence of the importance of topographic organization of spinofugal connections for nociceptive topognosis.
机译:总结避免环境危险取决于伤害性的拓扑学诊断或定​​位疼痛刺激的能力。提议这依赖于人体表面和CNS之间的地形组织点对点连接而产生的体位图。若要确定在伤害感受性拓扑学中脊柱上升突起的地形组织的作用,我们生成了条件性敲除小鼠,其在脊髓中缺乏netrin1受体DCC的表达。这些小鼠具有增加的同侧脊髓丘脑连接数量,并且响应于单侧刺激而表现出体感皮层的异常激活。此外,脊髓特异性Dcc基因敲除动物对福尔马林注射显示出错误的舔ing反应,表明预后受损。同样,具有DCC突变的人也会受到单方面的体感刺激而引起的双侧感觉。总的来说,我们的结果构成了功能性证​​据,证明了自发性干细胞连接的地形组织对于伤害性拓扑学诊断的重要性。

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