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Dye-coupling between neonatal spinal motoneurons and interneurons revealed by prolonged back-filling of a ventral root with a low molecular weight tracer in the mouse

机译:小鼠脊髓运动神经元和中间神经元之间的染料偶联通过小鼠低分子量示踪剂延长了腹侧根回填而揭示

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摘要

We investigated dye-coupling between motoneurons in the L6 segment of the neonatal mouse spinal cord that contains limb-innervating motoneurons and sexually dimorphic motor nuclei. Using an isolated spinal cord preparation, we back-filled the cut, L6 ventral root with the small molecule Neurobiotin, or the much larger dextran-conjugated fluorophores for 16–24 hours. Motoneurons and parasympathetic preganglionic neurons were filled with both markers, but dye-coupling was only seen with Neurobiotin fills. Following a neurobiotin fill, fluorescence was observed in contralateral motoneurons, in motoneurons innervating adjacent ventral roots, and in ChAT-negative, putative interneurons outside of the motoneuron pools in addition to the directly back-labeled L6 motoneurons. It is known that the gap junction protein connexin-36 is widely expressed in the sexually dimorphic motoneurons of the L6 segment, suggesting that the dye-coupling is mediated by gap junctions. The technique has revealed previously unknown connections of motoneurons in the neonatal mouse cord that are likely to play important roles in the development and function of spinal circuits.
机译:我们调查了新生小鼠脊髓的L6段中的运动神经元之间的染料偶联,该运动神经元包含神经支配的运动神经元和性二态运动核。使用分离的脊髓制剂,我们在切开的L6腹侧根中填充了小分子Neurobiotin或更大的葡聚糖结合的荧光团16至24小时。绒毛膜隆和副交感神经节前神经元充满了这两种标记物,但染料偶联仅在Neurobiotin填充物中可见。神经生物素填充后,除了直接背面标记的L6运动神经元外,在对侧运动神经元,支配邻近腹侧根的运动神经元以及运动神经元池之外的ChAT阴性推定的中间神经元中也观察到荧光。已知间隙连接蛋白连接蛋白-36在L6节段的有性二形运动神经元中广泛表达,表明染料偶联是由间隙连接介导的。该技术揭示了运动神经元在新生小鼠脊髓中的未知连接,这可能在脊髓回路的发育和功能中起重要作用。

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