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首页> 外文期刊>Brain research >Lack of adenylate cyclase 1 (AC1): Consequences on corticospinal tract development and on locomotor recovery after spinal cord injury
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Lack of adenylate cyclase 1 (AC1): Consequences on corticospinal tract development and on locomotor recovery after spinal cord injury

机译:缺乏腺苷酸环化酶1(AC1):脊髓损伤后皮质脊髓束发育和运动恢复的后果

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Cyclic AMP (cAMP) sigialling pathways are involved in axonal growth and regeneration. The calcium-calmodulin- stimulated adenylate cyclase 1 (AC1), a regulator of cAMP levels, is strongly expressed in the corticospinal motor neurons (CSMN) in cerebral cortex layer V during development, but its role in the development of the corticospinal tract (CST) is unknown. Here, we analyse the organization of the CST pathway using anterograde and retrograde tracers in the barrelless (brl) mouse that carries an inactivating mutation of the AC1 gene. We show that in brl mice the general organization of the CST is normal but there is an increase in the number of axons in the ipsilateral contingent in the dorsal and ventral medial funiculi of the cervical spinal cord. The density of CSMN in layer V of the motor cortex is increased in brl compared to wild-type mice. Thus, lack of AC1 likely perturbs late phases of CSMN and CST development. Next, we examine the motor recovery after a spinal cord injury (SCI). We find that brl mice show enhanced locomotor functions as assessed by the BMS (Basso mouse scale) as early as 6 h and up to 6 weeks after SCI, indicating a smaller responsiveness of brl mice to SCI. It is therefore possible that developmental effects on motor systems might decrease the locomotor effects consecutive to a SCI. This point is particularly important with regards to the use of transgenic animals for testing SCI recovery. (C) 2014 Elsevier B.V. All rights reserved.
机译:循环AMP(cAMP)信号通路参与轴突的生长和再生。钙钙调蛋白刺激的腺苷酸环化酶1(AC1),cAMP水平的调节剂,在发育过程中在大脑皮层V的皮质脊髓运动神经元(CSMN)中强烈表达,但在皮质脊髓束(CST)的发育中起着重要作用)是未知的。在这里,我们分析了在带有AC1基因失活突变的无桶(brl)小鼠中使用顺行和逆行示踪剂对CST途径的组织。我们显示在brl小鼠中,CST的一般组织是正常的,但是在颈脊髓的背侧和腹侧内侧真菌的同侧分叉中,轴突的数量增加了。与野生型小鼠相比,运动皮层V层中CSMN的密度增加。因此,缺乏AC1可能会扰乱CSMN和CST开发的后期阶段。接下来,我们检查脊髓损伤(SCI)后的运动恢复。我们发现,早于SCI后6小时至最多6周,BMS小鼠就显示出Bl小鼠增强的运动功能(Basso小鼠规模),这表明Bl小鼠对SCI的反应较小。因此,对运动系统的发育影响可能会降低SCI后的运动影响。对于使用转基因动物测试SCI恢复而言,这一点特别重要。 (C)2014 Elsevier B.V.保留所有权利。

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