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A Contusive Model of Unilateral Cervical Spinal Cord Injury Using the Infinite Horizon Impactor

机译:无限视距撞击器对单侧颈脊髓损伤的挫伤模型

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摘要

While the majority of human spinal cord injuries occur in the cervical spinal cord, the vast majority of laboratory research employs animal models of spinal cord injury (SCI) in which the thoracic spinal cord is injured. Additionally, because most human cord injuries occur as the result of blunt, non-penetrating trauma (e.g. motor vehicle accident, sporting injury) where the spinal cord is violently struck by displaced bone or soft tissues, the majority of SCI researchers are of the opinion that the most clinically relevant injury models are those in which the spinal cord is rapidly contused.1 Therefore, an important step in the preclinical evaluation of novel treatments on their way to human translation is an assessment of their efficacy in a model of contusion SCI within the cervical spinal cord. Here, we describe the technical aspects and resultant anatomical and behavioral outcomes of an unilateral contusive model of cervical SCI that employs the Infinite Horizon spinal cord injury impactor.Sprague Dawley rats underwent a left-sided unilateral laminectomy at C5. To optimize the reproducibility of the biomechanical, functional, and histological outcomes of the injury model, we contused the spinal cords using an impact force of 150 kdyn, an impact trajectory of 22.5° (animals rotated at 22.5°), and an impact location off of midline of 1.4 mm. Functional recovery was assessed using the cylinder rearing test, horizontal ladder test, grooming test and modified Montoya's staircase test for up to 6 weeks, after which the spinal cords were evaluated histologically for white and grey matter sparing.The injury model presented here imparts consistent and reproducible biomechanical forces to the spinal cord, an important feature of any experimental SCI model. This results in discrete histological damage to the lateral half of the spinal cord which is largely contained to the ipsilateral side of injury. The injury is well tolerated by the animals, but does result in functional deficits of the forelimb that are significant and sustained in the weeks following injury. The cervical unilateral injury model presented here may be a resource to researchers who wish to evaluate potentially promising therapies prior to human translation.
机译:尽管大多数人的脊髓损伤发生在子宫颈脊髓中,但绝大多数实验室研究采用的是脊髓损伤动物模型(SCI)。另外,由于大多数人的脊髓损伤是由于钝的,非穿透性的创伤(例如,汽车事故,运动损伤)所致,脊髓被移位的骨头或软组织猛烈撞击,因此,大多数SCI研究人员认为 1 因此,与临床最相关的损伤模型是脊髓快速挫伤的模型。因此,在临床前评估新疗法对人类转化的方式中的重要步骤是评估其疗效在颈脊髓挫伤性脊髓损伤模型中。在这里,我们描述了采用无限地平线脊髓损伤撞击器的宫颈SCI单侧挫伤模型的技术方面以及由此产生的解剖学和行为结果.Sprague Dawley大鼠在C5接受了左侧单侧椎板切除术。为了优化损伤模型的生物力学,功能和组织学结果的可再现性,我们使用150 kdyn的冲击力,22.5°的冲击轨迹(动物以22.5°旋转)和远离冲击的位置挫伤了脊髓中线的1.4毫米。使用圆柱体养育测试,水平梯形测试,修饰测试和改良的Montoya阶梯测试评估功能恢复长达6周,之后通过组织学评估脊髓是否保留白质和灰质。对脊髓具有可复制的生物力学力,这是任何实验性SCI模型的重要特征。这导致对脊髓外侧部分的离散的组织学损伤,该损伤主要包含在损伤的同侧。动物对损伤的耐受性很好,但确实会导致前肢的功能缺陷,这种缺陷在损伤后的几周内显着并持续。此处介绍的子宫颈单侧损伤模型对于希望在人工翻译之前评估潜在有希望的治疗方法的研究人员可能是一种资源。

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