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在小鼠中进行分级半挫伤性颈脊髓损伤模型后的解剖学和行为学结果。

Anatomical and behavioral outcomes following a graded hemi-contusive cervical spinal cord injury model in mice.

机构信息

Division of Spinal Surgery, Department of Orthopaedics, Nanfang Hospital, Southern Medical University, Guangzhou, China.

International Collaboration on Repair Discoveries (ICORD), Blusson Spinal Cord Centre, University of British Columbia, Vancouver, Canada.

出版信息

Behav Brain Res. 2022 Feb 15;419:113698. doi: 10.1016/j.bbr.2021.113698. Epub 2021 Nov 29.

Abstract

BACKGROUND

A graded hemi-contusion spinal cord injury produces complex anatomical deformation of the spinal cord parenchyma. The relationship between lesion severity and behavioral consequences in a novel contusion mouse model remains unknown.

PURPOSE

We aimed to establish a graded cervical hemi-contusion spinal cord injury model in mice and investigate the correlation between graded anatomical damage to the spinal cord and resulting behavioral impairments.

METHODS

Thirty-two mice were divided into groups of 1.2 mm, 1.5 mm and sham. The tip of an impactor with a diameter of 1 mm was utilized to compress the left dorsal cord of C5 by 1.2 mm or 1.5 mm at a speed of 300 mm/s. Forelimb motor function was evaluated using rearing, grooming and grip-strength tests before and after the injuries. Histologically the area of white matter sparing, gray matter sparing and lesion area were quantified at 6-week-post-injury.

RESULTS

Behavioral assessments showed a more severe forelimb functional deficit in 1.5 mm contusion displacements relative to 1.2 mm contusion displacements after injury. The 1.2 mm hemi-contusion mainly caused damage to the dorsal fasciculus, ventral and dorsal horn, while the 1.5 mm hemi-contusion lead to additional damage extending to ventral fasciculus. Sparing of the gray and white matter at the epicenter was 36.8 ± 2.4% and 12.4 ± 2.6% in the 1.2 mm group, and 27.6 ± 4.0% and 4.1 ± 2.2% in the 1.5 mm group, respectively. Furthermore, the lesion area was 20.8 ± 3.0% and 36.0 ± 2.1% in the 1.2 mm and 1.5 mm groups, respectively. There was a significant correlation between the performance in the grooming test and white matter sparing, and between grip-test strength and gray matter sparing.

CONCLUSION

The present study demonstrates that a hemi-contusion cervical spinal cord injury in mice can be graded by contusion displacement and that there is a correlation between anatomical and behavioral outcomes. This study provides a means for determining the severity of lesions in a contusion mouse model.

摘要

背景

分级半切脊髓损伤会导致脊髓实质的复杂解剖变形。在新型挫伤小鼠模型中,损伤严重程度与行为后果之间的关系尚不清楚。

目的

我们旨在建立一种分级颈半切脊髓损伤模型,并研究脊髓分级解剖损伤与行为损伤之间的相关性。

方法

32 只小鼠分为 1.2mm、1.5mm 和假手术组。使用直径为 1mm 的冲击器以 300mm/s 的速度将 1.2mm 或 1.5mm 的尖端压缩到 C5 的背侧。在损伤前后使用直立、梳理和握力测试评估前肢运动功能。组织学上,在损伤后 6 周量化白质保留区、灰质保留区和损伤区的面积。

结果

行为评估显示,1.5mm 挫伤位移引起的前肢功能缺陷比 1.2mm 挫伤位移更为严重。1.2mm 半切挫伤主要损伤背束、腹角和背角,而 1.5mm 半切挫伤导致额外损伤延伸至腹束。在 1.2mm 组,损伤中心的灰质和白质保留率分别为 36.8±2.4%和 12.4±2.6%,在 1.5mm 组分别为 27.6±4.0%和 4.1±2.2%。此外,1.2mm 和 1.5mm 组的损伤面积分别为 20.8±3.0%和 36.0±2.1%。梳理试验中的表现与白质保留率之间,握力试验中的握力与灰质保留率之间存在显著相关性。

结论

本研究表明,在小鼠中,半切颈脊髓损伤可以通过挫伤位移分级,并且解剖学和行为学结果之间存在相关性。该研究为确定挫伤小鼠模型中损伤的严重程度提供了一种方法。

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