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A useful transgenic mouse line for studying the development of spinal nociceptive circuits.

机译:一个有用的转基因小鼠品系,用于研究脊髓伤害感受电路的发育。

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摘要

Noxious peripheral stimuli are detected by nociceptive DRG sensory neurons; this information is transmitted to the superficial dorsal horn of the spinal cord, relayed to the brain, then perceived as pain. Previous studies have shown that Wnt signaling plays a crucial role during the development of nociceptive circuits. We have reported a transgenic mouse line in which Tau-LacZ is driven by the promoter of one Wnt receptor, Frizzled10. Here, we further characterize this transgenic mouse line and present our findings that nociceptive circuits were specifically labeled by the Tau-LacZ transgene in developing spinal cord and DRG. Tau-LacZ specifically labeled commissural axons crossing the floor plate and transmitting nociceptive information to the brain. Thus this mouse line will provide a powerful genetic tool for studying the development of spinal nociceptive circuits and the mechanisms of commissural axon guidance.
机译:伤害性外周刺激由伤害性DRG感觉神经元检测。这些信息被传递到脊髓的浅表背角,再传递到大脑,然后被视为疼痛。先前的研究表明,Wnt信号传导在伤害感受电路的发展中起着至关重要的作用。我们已经报道了一种Tau-LacZ由一种Wnt受体Frizzled10的启动子驱动的转基因小鼠品系。在这里,我们进一步表征该转基因小鼠品系,并提出我们的发现,即在发育中的脊髓和DRG中,Tau-LacZ转基因特异标记了伤害感受电路。 Tau-LacZ特别标记了连合轴突穿过地板并将伤害性信息传递到大脑。因此,该小鼠系将为研究脊柱伤害感受回路的发展和连合轴突引导机制提供强大的遗传工具。

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