首页> 外文期刊>The Journal of Comparative Neurology >Identification of multisegmental nociceptive afferents that modulate locomotor circuits in the neonatal mouse spinal cord
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Identification of multisegmental nociceptive afferents that modulate locomotor circuits in the neonatal mouse spinal cord

机译:鉴定调节新生小鼠脊髓运动回路的多节伤害感受传入

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Compared to proprioceptive afferent collateral projections, less is known about the anatomical, neurochemical, and functional basis of nociceptive collateral projections modulating lumbar central pattern generators (CPG). Quick response times are critical to ensure rapid escape from aversive stimuli. Furthermore, sensitization of nociceptive afferent pathways can contribute to a pathological activation of motor circuits. We investigated the extent and role of collaterals of capsaicin-sensitive nociceptive sacrocaudal afferent (nSCA) nerves that directly ascend several spinal segments in Lissauer's tract and the dorsal column and regulate motor activity. Anterograde tracing demonstrated direct multisegmental projections of the sacral dorsal root 4 (S4) afferent collaterals in Lissauer's tract and in the dorsal column. Subsets of the traced S4 afferent collaterals expressed transient receptor potential vanilloid 1 (TRPV1), which transduces a nociceptive response to capsaicin. Electrophysiological data revealed that S4 dorsal root stimulation could evoke regular rhythmic bursting activity, and our data suggested that capsaicin-sensitive collaterals contribute to CPG activation across multiple segments. Capsaicin's effect on S4-evoked locomotor activity was potent until the lumbar 5 (L5) segments, and diminished in rostral segments. Using calcium imaging we found elevated calcium transients within Lissauer's tract and dorsal column at L5 segments when compared to the calcium transients only within the dorsal column at the lumbar 2 (L2) segments, which were desensitized by capsaicin. We conclude that lumbar locomotor networks in the neonatal mouse spinal cord are targets for modulation by direct multisegmental nSCA, subsets of which express TRPV1 in Lissauer's tract and the dorsal column. J. Comp. Neurol. 521:2870-2887, 2013.
机译:与本体感受传入侧支投射相比,对伤害性侧支投射调节腰部中央模式发生器(CPG)的解剖学,神经化学和功能基础知之甚少。快速响应时间对于确保快速摆脱厌恶刺激至关重要。此外,伤害性传入通路的敏化可有助于运动回路的病理激活。我们调查了辣椒素敏感性伤害感受性ac神经传入神经(nSCA)的旁支的范围和作用,这些神经直接提升了利绍尔和脊柱的多个脊柱节段并调节运动活动。顺行示踪显示利绍尔管和背柱中the背根4(S4)传入侧支的直接多节投影。追踪到的S4传入侧支的亚集表达了短暂的受体电位香草酸1(TRPV1),可转导对辣椒素的伤害性反应。电生理数据显示,S4背根刺激可引起规律的节律性爆发活动,而我们的数据表明,辣椒素敏感的侧支有助于跨多个节段的CPG活化。辣椒素对S4引起的运动功能的作用一直有效,直到腰5(L5)节段为止,而在延髓节段上减弱。通过钙成像,我们发现在Lissauer的L5区段和背柱内的钙瞬变与仅在腰部2(L2)区段的背柱内的钙瞬变相比有所升高,而后者在辣椒素中脱敏。我们得出的结论是,新生小鼠脊髓中的腰部运动网络是直接多段nSCA调节的靶标,nSCA的子集在利绍尔的道和背柱中表达TRPV1。 J.比较神经元。 521:2870-2887,2013。

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