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刘易斯大鼠、费希尔344大鼠和斯普拉格-道利大鼠在脊髓损伤后的脂质过氧化、运动恢复和红核脊髓束保留方面存在差异。

Lewis, Fischer 344, and sprague-dawley rats display differences in lipid peroxidation, motor recovery, and rubrospinal tract preservation after spinal cord injury.

作者信息

Mestre Humberto, Ramirez Manuel, Garcia Elisa, Martiñón Susana, Cruz Yolanda, Campos Maria G, Ibarra Antonio

机构信息

Faculty of Health Sciences, Universidad Anahuac Mexico Norte , Mexico City , Mexico.

CAMINA Project Research Center , Mexico City , Mexico.

出版信息

Front Neurol. 2015 May 15;6:108. doi: 10.3389/fneur.2015.00108. eCollection 2015.

Abstract

The rat is the most common animal model for the preclinical validation of neuroprotective therapies in spinal cord injury (SCI). Lipid peroxidation (LP) is a hallmark of the damage triggered after SCI. Free radicals react with fatty acids causing cellular and membrane disruption. LP accounts for a considerable amount of neuronal cell death after SCI. To better understand the implications of inbred and outbred rat strain selection on preclinical SCI research, we evaluated LP after laminectomy sham surgery and a severe contusion of the T9 spinal cord in female Sprague-Dawley (SPD), Lewis (LEW), and Fischer 344 (F344) rats. Further analysis included locomotor recovery using the Basso, Beattie, and Bresnahan (BBB) scale and retrograde rubrospinal tract tracing. LEW had the highest levels of LP products 72 h after sham surgery and SCI, significantly different from both F344 and SPD. SPD rats had the fastest functional recovery and highest BBB scores; these were not significantly different to F344. However, LEW rats achieved the lowest BBB scores throughout the 2-month follow-up, yielding significant differences when compared to SPD and F344. To see if the improvement in locomotion was secondary to an increase in axon survival, we evaluated rubrospinal neurons (RSNs) via retrograde labeling of the rubrospinal tract and quantified cells at the red nuclei. The highest numbers of RSNs were observed in SPD rats then F344; the lowest counts were seen in LEW rats. The BBB scores significantly correlated with the amount of positively stained RSN in the red nuclei. It is critical to identify interstrain variations as a potential confound in preclinical research. Multi-strain validation of neuroprotective therapies may increase chances of successful translation.

摘要

大鼠是脊髓损伤(SCI)神经保护疗法临床前验证中最常用的动物模型。脂质过氧化(LP)是SCI后引发损伤的一个标志。自由基与脂肪酸反应,导致细胞和细胞膜破坏。LP在SCI后导致相当数量的神经元细胞死亡。为了更好地理解近交系和远交系大鼠品系选择对临床前SCI研究的影响,我们评估了雌性斯普拉格-道利(SPD)、刘易斯(LEW)和费希尔344(F344)大鼠在椎板切除假手术和T9脊髓严重挫伤后的LP情况。进一步分析包括使用巴索、比蒂和布雷斯纳汉(BBB)量表评估运动恢复情况以及逆行红核脊髓束追踪。在假手术和SCI后72小时,LEW的LP产物水平最高,与F344和SPD均有显著差异。SPD大鼠功能恢复最快,BBB评分最高;与F344相比无显著差异。然而,在整个2个月的随访中,LEW大鼠的BBB评分最低,与SPD和F344相比有显著差异。为了观察运动改善是否继发于轴突存活增加,我们通过逆行标记红核脊髓束评估红核脊髓神经元(RSNs),并对红核中的细胞进行定量。在SPD大鼠中观察到的RSNs数量最多,其次是F344;在LEW大鼠中数量最少。BBB评分与红核中阳性染色的RSN数量显著相关。识别品系间差异作为临床前研究中的潜在混杂因素至关重要。神经保护疗法的多品系验证可能会增加成功转化的机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a0f9/4432686/5831a97350e9/fneur-06-00108-g001.jpg

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