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Increasing the Permeability of the Blood–brain Barrier in Three Different Models iin?vivo/i

机译:三种体内模型增加血脑屏障的通透性

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Summary Aims Blood–brain barrier ( BBB ) plays significant roles in the circumstance maintains for the central nervous system ( CNS ). The dysfunction of the BBB could occur in all pathological conditions of CNS diseases, such as ischemic stroke, cerebral edema, or inflammatory disorders. However, the comparisons among different animal models with a broken BBB in vivo are still need to be further studied. Methods Here we used three different mice models in vivo , including MCAO induce, LPS treatment, and cold injury to mimic the situation in clinic. The permeability of BBB in three models was detected by perfusion of Evan's blue dye. The functional proteins of the BBB including claudin‐5, VE ‐cadherin, and caveolin‐1 were compared in three different models in vivo . Results With the hyperpermeability of Evan's blue in the three models, both claudin‐5 and VE‐cadherin were decreased, while the expression of caveolin‐1 was increased. Our study showed that BBB dysfunction induced by MCAO in mice was relatively stable, reliable, and moderate compared with LPS or cold injury‐induced BBB permeability models, although the procedural time was generally long and operation complexity was hard. Moreover, our study also found that the model of the increased BBB permeability by cold injury was severe in the regional cerebral tissue and the model treated with LPS was mild in the global cerebral tissue. The operation of the two models in vivo was easy, quick, and stable. Conclusion The MCAO model was the most suitable for studying the permeability of BBB among the three models in vivo .
机译:总结目的血脑屏障(BBB)在维持中枢神经系统(CNS)的情况下起重要作用。在中枢神经系统疾病的所有病理情况下,例如缺血性中风,脑水肿或炎症性疾病,都可能发生血脑屏障功能障碍。然而,体内BBB断裂的不同动物模型之间的比较仍需进一步研究。方法在这里我们使用了三种不同的体内小鼠模型,包括MCAO诱导,LPS治疗和冷损伤来模拟临床情况。通过灌注伊文氏蓝色染料检测三种模型中血脑屏障的通透性。在三种不同的体内模型中比较了BBB的功能蛋白,包括claudin-5,VE-cadherin和Caveolin-1。结果在三个模型中,由于伊文氏蓝的高通透性,claudin-5和VE-cadherin均减少,而caveolin-1的表达增加。我们的研究表明,与LPS或冷损伤诱导的BBB通透性模型相比,MCAO诱导的小鼠BBB功能障碍相对稳定,可靠和中等,尽管手术时间通常较长且操作复杂度较高。此外,我们的研究还发现,冷损伤引起的BBB渗透性增加的模型在局部脑组织中很严重,而LPS治疗的模型在整体脑组织中较轻。两种模型在体内的操作简便,快捷且稳定。结论MCAO模型最适合研究三种体内BBB的渗透性。

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