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机械冲击反应与生物标志物水平的相关性:一种用于创伤性脑损伤生物标志物评估的新模型。

Correlation of mechanical impact responses and biomarker levels: A new model for biomarker evaluation in TBI.

作者信息

Li Yan, Zhang Liying, Kallakuri Srinivasu, Cohen Abigail, Cavanaugh John M

机构信息

Department of Biomedical Engineering, Wayne State University, 818 W. Hancock Street, Detroit, MI 48201, United States.

Department of Biomedical Engineering, Wayne State University, 818 W. Hancock Street, Detroit, MI 48201, United States.

出版信息

J Neurol Sci. 2015 Dec 15;359(1-2):280-6. doi: 10.1016/j.jns.2015.08.035. Epub 2015 Sep 2.

Abstract

A modified Marmarou impact acceleration model was used to help screen biomarkers to assess brain injury severity. Anesthetized male Sprague-Dawley rats were subjected to a closed head injury from 1.25, 1.75 and 2.25 m drop heights. Linear and angular responses of the head were measured in vivo. 24h after impact, cerebrospinal fluid (CSF) and serum were collected. CSF and serum levels of phosphorylated neurofilament heavy (pNF-H), glial fibrillary acidic protein (GFAP), interleukin 6 (IL-6), and amyloid beta (Aβ) 1-42 were assessed by enzyme-linked immunosorbent assay (ELISA). Compared to controls, significantly higher CSF and serum pNF-H levels were observed in all impact groups, except between 1.25 m and control in serum. Furthermore, CSF and serum pNF-H levels were significantly different between the impact groups. For GFAP, both CSF and serum levels were significantly higher at 2.25 m compared to 1.75 m, 1.25 m and controls. There was no significant difference in CSF and serum GFAP levels between 1.75 m and 1.25 m, although both groups were significantly higher than control. TBI rats also showed significantly higher levels of IL-6 versus control in both CSF and serum, but no significant difference was observed between each impact group. Levels of Aβ were not significantly different between groups. Pearson's correlation analysis showed pNF-H and GFAP levels in CSF and serum had positive correlation with power (rate of impact energy), followed by average linear acceleration and surface righting (p<0.01), which were good predictors for traumatic axonal injury according to histologic assessment in our previous study, suggesting that they are directly related to the injury mechanism. The model used in this study showed a unique ability in elucidating the relationship between biomarker levels and severity of the mechanical trauma to the brain.

摘要

采用改良的 Marmarou 撞击加速模型来辅助筛选生物标志物,以评估脑损伤的严重程度。将雄性 Sprague-Dawley 大鼠麻醉后,从 1.25 米、1.75 米和 2.25 米的跌落高度使其头部受到闭合性损伤。在活体状态下测量头部的线性和角向响应。撞击后 24 小时,收集脑脊液(CSF)和血清。通过酶联免疫吸附测定(ELISA)评估脑脊液和血清中磷酸化神经丝重链(pNF-H)、胶质纤维酸性蛋白(GFAP)、白细胞介素 6(IL-6)和淀粉样β蛋白(Aβ)1-42 的水平。与对照组相比,除血清中 1.25 米组与对照组之间外,所有撞击组的脑脊液和血清 pNF-H 水平均显著升高。此外,各撞击组之间的脑脊液和血清 pNF-H 水平存在显著差异。对于 GFAP,与 1.75 米、1.25 米组及对照组相比,2.25 米组的脑脊液和血清水平均显著升高。1.75 米组和 1.25 米组之间的脑脊液和血清 GFAP 水平无显著差异,尽管这两组均显著高于对照组。创伤性脑损伤(TBI)大鼠的脑脊液和血清中 IL-6 水平也显著高于对照组,但各撞击组之间未观察到显著差异。各组之间 Aβ 水平无显著差异。Pearson 相关性分析表明,脑脊液和血清中的 pNF-H 和 GFAP 水平与能量(撞击能量率)呈正相关,其次与平均线性加速度和表面扶正呈正相关(p<0.01),根据我们先前研究中的组织学评估,这些是创伤性轴索损伤的良好预测指标,表明它们与损伤机制直接相关。本研究中使用的模型在阐明生物标志物水平与脑机械性创伤严重程度之间的关系方面显示出独特的能力。

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