青春期踝关节扭伤后皮质脊髓束的改变:小鼠模型的启示

IF 2.3 Q2 SPORT SCIENCES
Xiao'ao Xue , Xicheng Gu , Yuwen Zhang , Xuejun Wu , Tian Xia , Rong Lu , He Wang , Yinghui Hua
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引用次数: 0

摘要

目的:外侧踝关节扭伤(LAS)与皮质脊髓通路缺陷有关。现有的证据主要是基于横断面调查和非因果推测。本研究旨在确定LAS小鼠模型中韧带横断前和韧带横断后是否会发生适应性不良的皮质脊髓通路改变。此外,本研究还探讨了这种变化在青春期小鼠中是否比成年小鼠更明显。方法将24只8周龄的青春期小鼠和24只24周龄的成年小鼠随机分为踝关节外侧韧带横断组和假手术组。术前和术后8周对皮质脊髓通路进行弥散加权成像。提取分数各向异性(FA)值,反映髓质、脑桥、中脑和大脑皮质脊髓亚区纤维的完整性。结果41只小鼠完成了重复图像采集。手术前,在青春期或成年小鼠中,未检测到四个皮质脊髓亚区对FA的显著组效应。手术后两个月,青少年队列显示踝关节韧带横断后髓质亚区FA显著减少(β-基线校正= - 0.083,95% CI, - 0.145至- 0.021,p校正= 0.048)。相反,在成人队列中没有观察到踝关节韧带横断对皮质脊髓FA的显著影响。结论青少年LAS小鼠模型存在皮质脊髓束的不适应改变,表现为髓质亚区纤维完整性降低。虽然这些结果来自动物模型,但它们为未来研究肌肉骨骼损伤后神经功能缺陷的机制提供了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Corticospinal tract alterations after ankle sprain in adolescence: Insights from the mouse model

Corticospinal tract alterations after ankle sprain in adolescence: Insights from the mouse model

Purpose

Lateral ankle sprains (LAS) are associated with corticospinal pathway deficits. Existing evidence is primarily based on cross-sectional investigations and noncausal speculations. This study aims to determine whether maladaptive corticospinal pathway alterations occur pre- and postligament transection in LAS mouse models. Additionally, this study explores whether the alterations are more pronounced in adolescent mice than adults.

Methods

Twenty-four 8-week-old adolescent and twenty-four 24-week-old adult mice were randomly assigned to lateral ankle ligament transection or sham surgery. Diffusion-weighted imaging of the corticospinal pathway was performed presurgery and 8 weeks postsurgery. Fractional anisotropy (FA) values, reflecting fiber integrity within the corticospinal subregions of the medulla, pons, midbrain, and cerebrum, were extracted.

Results

Overall, 41 mice completed repeated image acquisition. Before surgery, no significant group effects on FA within the four corticospinal subregions were detected in either adolescent or adult mice. Two months after surgery, the adolescent cohort displayed a significant reduction in FA in the medulla subregion following ankle ligament transection (β-baseline-adjusted ​= ​−0.083, 95% CI, −0.145 to −0.021, p-corrected ​= ​0.048). Conversely, no significant effects of ankle ligament transection on corticospinal FA were observed in the adult cohort.

Conclusion

The maladaptive alterations in the corticospinal tract could be observed in the adolescent LAS mouse model, characterized by reduced fiber integrity in the medulla subregion. While these results are derived from an animal model, they provide a foundation for future investigations into the mechanisms underlying neurological deficits following musculoskeletal injuries.
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来源期刊
Sports Medicine and Health Science
Sports Medicine and Health Science Health Professions-Physical Therapy, Sports Therapy and Rehabilitation
CiteScore
5.50
自引率
0.00%
发文量
36
审稿时长
55 days
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