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一种用于研究针对近端和远端前肢功能恢复的新型治疗靶点的颈半侧脊髓挫伤损伤模型。

A Cervical Hemi-Contusion Spinal Cord Injury Model for the Investigation of Novel Therapeutics Targeting Proximal and Distal Forelimb Functional Recovery.

作者信息

Mondello Sarah E, Sunshine Michael D, Fischedick Amanda E, Moritz Chet T, Horner Philip J

机构信息

1 Department of Rehabilitation Medicine, University of Washington , Seattle, Washington.

2 The Center for Sensorimotor Neural Engineering , Seattle, Washington.

出版信息

J Neurotrauma. 2015 Dec 15;32(24):1994-2007. doi: 10.1089/neu.2014.3792. Epub 2015 Sep 29.

DOI:10.1089/neu.2014.3792
PMID:25929319
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4677514/
Abstract

Cervical spinal cord contusion is the most common human spinal cord injury, yet few rodent models replicate the pathophysiological and functional sequela of this injury. Here, we modified an electromechanical injury device and characterized the behavioral and histological changes occurring in response to a lateralized C4 contusion injury in rats. A key feature of the model includes a non-injurious touch phase where the spinal cord surface is dimpled with a consistent starting force. Animals were either left intact as a control, received a non-injury-producing touch on the surface of the cord ("sham"), or received a 0.6 mm or a 0.8 mm displacement injury. Rats were then tested on the forelimb asymmetry use test, CatWalk, and the Irvine, Beatties, and Bresnahan (IBB) cereal manipulation task to assess proximal and distal upper limb function for 12 weeks. Injuries of moderate (0.6 mm) and large (0.8 mm) displacement showed consistent differences in forelimb asymmetry, metrics of the CatWalk, and sub-scores of the IBB. Overall findings indicated long lasting proximal and distal upper limb deficits following 0.8 mm injury but transient proximal with prolonged distal limb deficits following 0.6 mm injury. Significant differences in loss of ipsilateral unmyelinated and myelinated white matter was detected between injury severities. Demyelination was primarily localized to the dorsolateral region of the hemicord and extended further rostral following 0.8 mm injury. These findings establish the C4 hemi-contusion injury as a consistent, graded model for testing novel treatments targeting forelimb functional recovery.

摘要

颈脊髓挫伤是人类最常见的脊髓损伤,但很少有啮齿动物模型能复制这种损伤的病理生理和功能后遗症。在此,我们改进了一种机电损伤装置,并对大鼠C4节段侧方挫伤损伤后出现的行为和组织学变化进行了表征。该模型的一个关键特征包括一个无损伤的触摸阶段,在此阶段脊髓表面会以一致的起始力形成凹陷。动物要么保持完整作为对照,要么在脊髓表面接受非损伤性触摸(“假手术”),要么接受0.6毫米或0.8毫米的移位损伤。然后对大鼠进行前肢不对称使用测试、CatWalk测试以及欧文、比蒂和布雷斯纳汉(IBB)谷物操作任务,以评估近端和远端上肢功能,为期12周。中度(0.6毫米)和重度(0.8毫米)移位损伤在CatWalk测试指标和IBB子评分的前肢不对称方面表现出一致差异。总体结果表明,0.8毫米损伤后近端和远端上肢存在长期缺陷,而0.6毫米损伤后近端存在短暂缺陷,远端肢体存在长期缺陷。在损伤严重程度之间检测到同侧无髓鞘和有髓鞘白质损失的显著差异。脱髓鞘主要局限于半侧脊髓的背外侧区域,在0.8毫米损伤后向头侧进一步扩展。这些发现确立了C4半挫伤损伤作为一种一致的、分级的模型,用于测试针对前肢功能恢复的新治疗方法。

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Cervical intraspinal microstimulation evokes robust forelimb movements before and after injury.颈椎椎管内微刺激可在损伤前后引起有力的前肢运动。
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Dorsolateral funiculus lesioning of the mouse cervical spinal cord at C4 but not at C6 results in sustained forelimb motor deficits.在 C4 而非 C6 水平对小鼠颈脊髓背外侧束进行横断,会导致持久的前肢运动功能缺陷。
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