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一种可重复的小鼠前肢运动皮质中风内皮素-1模型。

A reproducible Endothelin-1 model of forelimb motor cortex stroke in the mouse.

作者信息

Roome R Brian, Bartlett Robert F, Jeffers Matthew, Xiong Jieying, Corbett Dale, Vanderluit Jacqueline L

机构信息

BioMedical Sciences, Faculty of Medicine Memorial University of Newfoundland, 300 Prince Phillip Dr., St. John's, NL A1B 3V6, Canada; Heart and Stroke Foundation of Canada, Canadian Partnership for Stroke Recovery, Canada.

BioMedical Sciences, Faculty of Medicine Memorial University of Newfoundland, 300 Prince Phillip Dr., St. John's, NL A1B 3V6, Canada; Heart and Stroke Foundation of Canada, Canadian Partnership for Stroke Recovery, Canada; Department Cellular & Molecular Medicine, University of Ottawa, 451 Smyth Rd, Ottawa, ON K1H 8M5, Canada.

出版信息

J Neurosci Methods. 2014 Aug 15;233:34-44. doi: 10.1016/j.jneumeth.2014.05.014. Epub 2014 Jun 7.

Abstract

BACKGROUND

Despite the availability of numerous transgenic mouse lines to study the role of individual genes in promoting neural repair following stroke, few studies have availed of this technology, primarily due to the lack of a reproducible ischemic injury model in the mouse. Intracortical injections of Endothelin-1 (ET1) a potent vasoconstrictive agent, reliably produces focal infarcts with concomitant behavioral deficits in rats. In contrast, ET1 infarcts in mice are significantly smaller and do not generate consistent behavioral deficits.

NEW METHOD

We have modified the ET1 ischemia model to target the anterior forelimb motor cortex (aFMC) and show that this generates a reproducible focal ischemic injury in mice with consistent behavioral deficits. Furthermore, we have developed a novel analysis of the cylinder test by quantifying paw-dragging behavior.

RESULTS

ET1 injections which damage deep layer neurons in the aFMC generate reproducible deficits on the staircase test. Cylinder test analysis showed no forelimb asymmetry post-injection; however, we observed a novel paw-dragging behavior in mice which is a positive sign of damage to the FMC.

COMPARISON WITH EXISTING METHODS

Previous ET1 studies have demonstrated inconsistent behavioral deficits; however, targeting ET1 injections to the aFMC reliably results in staircase deficits. We show that analysis of paw-dragging behavior in the cylinder test is a more sensitive measure of damage to the FMC than the classical forelimb asymmetry analysis.

CONCLUSIONS

We have developed a focal ischemic injury model in the mouse that results in reproducible behavioral deficits and can be used to test future regenerative therapies.

摘要

背景

尽管有众多转基因小鼠品系可用于研究单个基因在促进中风后神经修复中的作用,但很少有研究利用这项技术,主要原因是小鼠缺乏可重复的缺血性损伤模型。向大鼠大脑皮质内注射强效血管收缩剂内皮素-1(ET1)可可靠地产生局灶性梗死,并伴有行为缺陷。相比之下,ET1在小鼠中造成的梗死灶明显较小,且不会产生一致的行为缺陷。

新方法

我们对ET1缺血模型进行了改进,使其作用于前肢运动皮质(aFMC),结果表明这在小鼠中产生了可重复的局灶性缺血性损伤,并伴有一致的行为缺陷。此外,我们通过量化拖爪行为,开发了一种对圆筒实验的全新分析方法。

结果

损伤aFMC深层神经元的ET1注射在阶梯实验中产生了可重复的缺陷。圆筒实验分析显示注射后无前肢不对称;然而,我们在小鼠中观察到一种新的拖爪行为,这是FMC受损的一个积极迹象。

与现有方法的比较

先前的ET1研究表明行为缺陷不一致;然而,将ET1注射靶向aFMC可可靠地导致阶梯缺陷。我们表明,圆筒实验中拖爪行为的分析比经典的前肢不对称分析更能敏感地检测FMC的损伤。

结论

我们在小鼠中开发了一种局灶性缺血性损伤模型,该模型可导致可重复的行为缺陷,可用于测试未来的再生疗法。

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