Transient versus Permanent MCA Occlusion in Mice Genetically Modified to Have Good versus Poor Collaterals.

Med One Pub Date : 2019-01-01 Epub Date: 2019-11-27 DOI:10.20900/mo.20190024
Hua Zhang, James E Faber
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引用次数: 14

Abstract

Collateral-dependent blood flow is capable of significantly lessening the severity of stroke. Unfortunately, collateral flow varies widely in patients for reasons that remain unclear. Studies in mice have shown that the number and diameter of cerebral collaterals vary widely due primarily to polymorphisms in genes, e.g., Rabep2, involved in their formation during development. However, understanding how variation in collateral abundance affects stroke progression has been hampered by lack of a method to reversibly ligate the distal middle cerebral artery (MCAO) in mice. Here we present a method and examine infarct volume 24 h after transient (tMCAO, 90 min) versus permanent occlusion (pMCAO) in mice with good versus poor collaterals. Wildtype C57BL/6 mice (have abundant collaterals) sustained small infarctions following tMCAO that increased 2.1-fold after pMCAO, reflecting significant penumbra present at 90 min. Mutant C57BL/6 mice lacking Rabep2 (have reduced collaterals) sustained a 4-fold increase in infarct volume over WT following tMCAO and a smaller additional increase (0.4-fold) after pMCAO, reflecting reduced penumbra. Wildtype BALB/cBy (have a deficient Rabep2 variant and poor collaterals) had large infarctions following tMCAO that increased less (0.6-fold) than the above wildtype C57BL/6 mice following pMCAO. Mutant BALB/cBy mice (have deficient Rabep2 replaced with the C57BL/6 variant thus increased collaterals) sustained smaller infarctions after tMCAO. However, unlike C57BL/6 versus Rabep2 mice, penumbra was not increased since infarct volume increased only 0.3-fold following pMCAO. These findings present a murine model of tMCAO and demonstrate that neuroprotective mechanisms, in addition to collaterals, also vary with genetic background and affect the evolution of stroke.

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基因改良小鼠的暂时性和永久性MCA闭塞,有良好的和不良的侧支。
络依赖血流量能显著减轻中风的严重程度。不幸的是,侧支血流在患者中变化很大,原因尚不清楚。对小鼠的研究表明,脑侧络的数量和直径差异很大,主要是由于在发育过程中参与其形成的基因多态性,例如Rabep2。然而,由于缺乏一种可逆结扎小鼠大脑中远端动脉(MCAO)的方法,了解侧支丰度的变化如何影响中风进展一直受到阻碍。在这里,我们提出了一种方法,并在具有良好和不良侧络的小鼠中,检测暂时性(tMCAO, 90分钟)和永久性闭塞(pMCAO)后24小时的梗死体积。野生型C57BL/6小鼠(有丰富的侧枝)在tMCAO后持续出现小范围梗死,在pMCAO后增加了2.1倍,反映出在90分钟时存在明显的半暗区。缺乏Rabep2的突变型C57BL/6小鼠(侧枝减少)在tMCAO后的梗死面积比WT增加了4倍,在pMCAO后增加了0.4倍,反映出半暗区减少。野生型BALB/cBy(有Rabep2变异缺陷和不良的侧支)在tMCAO后出现大面积梗死,比上述野生型C57BL/6小鼠在pMCAO后增加少(0.6倍)。突变的BALB/cBy小鼠(将Rabep2缺陷替换为C57BL/6变体,从而增加侧枝)在tMCAO后持续较小的梗死。然而,与C57BL/6和Rabep2小鼠不同的是,pMCAO后半暗区没有增加,因为梗死体积只增加了0.3倍。这些发现提出了一个小鼠tMCAO模型,并表明神经保护机制,除了络,也随遗传背景而变化,并影响中风的进化。
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