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首页> 外文期刊>Cerebrospinal Fluid Research >Blood–brain barrier disruption in CCL2 transgenic mice during pertussis toxin-induced brain inflammation
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Blood–brain barrier disruption in CCL2 transgenic mice during pertussis toxin-induced brain inflammation

机译:百日咳毒素诱导的脑炎症过程中CCL2转基因小鼠的血脑屏障破坏

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摘要

Background The chemokine CCL2 has an important role in the recruitment of inflammatory cells into the central nervous system (CNS). A transgenic mouse model that overexpresses CCL2 in the CNS shows an accumulation of leukocytes within the perivascular space surrounding vessels, and which infiltrate into the brain parenchyma following the administration of pertussis toxin (PTx). Methods This study used contrast-enhanced magnetic resonance imaging (MRI) to quantify the extent of blood–brain barrier (BBB) disruption in this model pre- and post-PTx administration compared to wild-type mice. Contrast-enhanced MR images were obtained before and 1, 3, and 5?days after PTx injection in each animal. After the final imaging session fluorescent dextran tracers were administered intravenously to each mouse and brains were examined histologically for cellular infiltrates, BBB leakage and tight junction protein. Results BBB breakdown, defined as a disruption of both the endothelium and glia limitans, was found only in CCL2 transgenic mice following PTx administration and seen on MR images as focal areas of contrast enhancement and histologically as dextrans leaking from blood vessels. No evidence of disruption in endothelial tight junctions was observed. Conclusion Genetic and environmental stimuli were needed to disrupt the integrity of the BBB in this model of neuroinflammation.
机译:背景趋化因子CCL2在炎症细胞募集到中枢神经系统(CNS)中具有重要作用。在中枢神经系统中过表达CCL2的转基因小鼠模型显示,白细胞在血管周围血管周空间内积累,并在施用百日咳毒素(PTx)后渗入脑实质。方法:本研究使用对比增强磁共振成像(MRI)来量化与野生型小鼠相比在PTx给药前后该模型中血脑屏障(BBB)破坏的程度。在每只动物中,在PTx注射之前,1、3和5天后获得了增强的MR图像。在最后一次成像后,向每只小鼠静脉内施用荧光右旋糖酐示踪剂,并从组织学角度检查大脑的细胞浸润,BBB渗漏和紧密连接蛋白。结果仅在PTx给药后在CCL2转基因小鼠中发现了BBB分解,定义为内皮和神经胶质的破坏,在MR图像上被视为对比度增强的焦点区域,在组织学上被视为右旋糖酐从血管渗漏。没有观察到内皮紧密连接破坏的证据。结论在这种神经炎症模型中,需要遗传和环境刺激来破坏BBB的完整性。

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