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通过对脊髓回路的多维单胺能调制来控制特定的运动行为。

Controlling specific locomotor behaviors through multidimensional monoaminergic modulation of spinal circuitries.

机构信息

Neurology Department, University of Zurich, CH-8008 Zurich, Switzerland.

出版信息

J Neurosci. 2011 Jun 22;31(25):9264-78. doi: 10.1523/JNEUROSCI.5796-10.2011.

Abstract

Descending monoaminergic inputs markedly influence spinal locomotor circuits, but the functional relationships between specific receptors and the control of walking behavior remain poorly understood. To identify these interactions, we manipulated serotonergic, dopaminergic, and noradrenergic neural pathways pharmacologically during locomotion enabled by electrical spinal cord stimulation in adult spinal rats in vivo. Using advanced neurobiomechanical recordings and multidimensional statistical procedures, we reveal that each monoaminergic receptor modulates a broad but distinct spectrum of kinematic, kinetic, and EMG characteristics, which we expressed into receptor-specific functional maps. We then exploited this catalog of monoaminergic tuning functions to devise optimal pharmacological combinations to encourage locomotion in paralyzed rats. We found that, in most cases, receptor-specific modulatory influences summed near algebraically when stimulating multiple pathways concurrently. Capitalizing on these predictive interactions, we elaborated a multidimensional monoaminergic intervention that restored coordinated hindlimb locomotion with normal levels of weight bearing and partial equilibrium maintenance in spinal rats. These findings provide new perspectives on the functions of and interactions between spinal monoaminergic receptor systems in producing stepping, and define a framework to tailor pharmacotherapies for improving neurological functions after CNS disorders.

摘要

下行单胺能输入对脊髓运动回路有显著影响,但特定受体与行走行为控制之间的功能关系仍知之甚少。为了确定这些相互作用,我们在体内成年脊髓大鼠的电脊髓刺激下的运动过程中,通过药理学手段操纵 5-羟色胺能、多巴胺能和去甲肾上腺素能神经通路。我们使用先进的神经生物力学记录和多维统计程序,揭示了每种单胺能受体都调节着广泛但不同的运动学、动力学和肌电图特征,我们将这些特征表达为受体特异性功能图谱。然后,我们利用这个单胺能调谐功能目录来设计最佳的药理学组合,以鼓励瘫痪大鼠的运动。我们发现,在大多数情况下,当同时刺激多个通路时,受体特异性调节影响近于代数相加。利用这些预测性相互作用,我们详细阐述了多维单胺能干预措施,该措施恢复了协调的后肢运动,使脊髓大鼠具有正常的负重水平和部分平衡维持能力。这些发现为脊髓单胺能受体系统在产生踏步运动中的功能和相互作用提供了新的视角,并为定制药物治疗以改善中枢神经系统疾病后的神经功能提供了框架。

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