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Effects of concussion on the blood–brain barrier in humans and rodents:

机译:脑震荡对人类和啮齿动物的血脑屏障的影响:

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Traumatic brain injury and the long-term consequences of repeated concussions constitute mounting concerns in the United States, with 5.3 million individuals living with a traumatic brain injury-related disability. Attempts to understand mechanisms and possible therapeutic approaches to alleviate the consequences of repeat mild concussions or traumatic brain injury on cerebral vasculature depend on several aspects of the trauma, including: (1) the physical characteristics of trauma or insult that result in damage; (2) the time “window” after trauma in which neuropathological features develop; (3) methods to detect possible breakdown of the blood–brain barrier; and (4) understanding different consequences of a single concussion as compared with multiple concussions. We review the literature to summarize the current understanding of blood–brain barrier and endothelial cell changes post-neurotrauma in concussions and mild traumatic brain injury. Attention is focused on concussion and traumatic brain injury in humans, with a goal of pointing out the gaps in our knowledge and how studies of rodent model systems of concussion may help in filling these gaps. Specifically, we focus on disruptions that concussion causes to the blood–brain barrier and its multifaceted consequences. Importantly, the magnitude of post-concussion blood–brain barrier dysfunction may influence the time course and extent of neuronal recovery; hence, we include in this review comparisons of more severe traumatic brain injury to concussion where appropriate. Finally, we address the important, and still unresolved, issue of how best to detect possible breakdown in the blood–brain barrier following neurotrauma by exploring intravascular tracer injection in animal models to examine leakage into the brain parenchyma.
机译:在美国,创伤性脑损伤和反复脑震荡的长期后果日益引起人们的关注,有530万人患有与脑损伤相关的创伤性残疾。试图了解减轻反复轻度脑震荡或外伤性脑损伤对脑血管的影响的机制和可能的治疗方法,取决于外伤的几个方面,包括:(1)导致损伤的外伤或侮辱的物理特征; (2)创伤后出现神经病理特征的“窗口”时间; (3)检测血脑屏障可能破坏的方法; (4)了解单个脑震荡与多个脑震荡的不同后果。我们回顾了文献,总结了当前对脑震荡和轻度脑外伤后血脑屏障和内皮细胞变化的了解。注意力集中在人类的脑震荡和外伤性脑损伤上,目的是指出我们的知识差距以及对脑震荡啮齿动物模型系统的研究如何帮助填补这些差距。具体来说,我们关注脑震荡对血脑屏障及其多方面后果的破坏。重要的是,脑震荡后血脑屏障功能障碍的严重程度可能会影响神经元恢复的时间进程和程度。因此,在适当的情况下,我们在本文中包括了比较严重的脑外伤与脑震荡的比较。最后,我们通过探索动物模型中的血管内示踪剂注入以检查渗入脑实质的动物模型,探讨了如何最好地检测神经创伤后血脑屏障可能发生的破裂这一重要但仍未解决的问题。

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