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首页> 外文期刊>Scientific reports. >Blast exposure elicits blood-brain barrier disruption and repair mediated by tight junction integrity and nitric oxide dependent processes
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Blast exposure elicits blood-brain barrier disruption and repair mediated by tight junction integrity and nitric oxide dependent processes

机译:通过紧密结合完整性和一氧化氮依赖性过程介导的血脑屏障破坏和修复

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Mild blast-induced traumatic brain injury (TBI) is associated with blood-brain barrier (BBB) disruption. However, the mechanisms whereby blast disrupts BBB integrity are not well understood. To address this issue BBB permeability to peripherally injected 14C-sucrose and 99mTc-albumin was quantified in ten brain regions at time points ranging from 0.25 to 72?hours. In mice, repetitive (2X) blast provoked BBB permeability to 14C-sucrose that persisted in specific brain regions from 0.25 to 72?hours. However, 99mTc-albumin revealed biphasic BBB disruption (open-closed-open) over the same interval, which was most pronounced in frontal cortex and hippocampus. This indicates that blast initiates interacting BBB disruption and reparative processes in specific brain regions. Further investigation of delayed (72?hour) BBB disruption revealed that claudin-5 (CLD5) expression was disrupted specifically in the hippocampus, but not in dorsal striatum, a brain region that showed no blast-induced BBB permeability to sucrose or albumin. In addition, we found that delayed BBB permeability and disrupted CLD5 expression were blocked by the nitric oxide synthase inhibitor N(G)-nitro-L-arginine methyl ester (L-NAME). These data argue that latent nitric oxide-dependent signaling pathways initiate processes that result in delayed BBB disruption, which are manifested in a brain-region specific manner.
机译:轻度爆炸诱导的创伤性脑损伤(TBI)与血脑屏障(BBB)破坏有关。然而,爆炸破坏BBB完整性的机制尚不清楚。为了解决这个问题,将BBB渗透到外周注射的14C-蔗糖和99MTC-白蛋白在10个脑区中量化,在0.25至72℃的时间点。在小鼠中,重复(2x)被激发的BBB渗透率为14℃ - 蔗糖,其在特定的脑区持续0.25-72?小时。然而,99MTC-白蛋白显示相同间隔的双相BBB中断(开闭开放),其在额外皮质和海马中最为明显。这表明BLAST引发了在特定脑区中的BBB中断和重复过程中的互动。进一步调查延迟(72〜小时)BBB破坏显示,克劳丁-5(CLD5)表达在海马中特别破坏,但不在背体纹状体中被破坏,该脑区显示出对蔗糖或白蛋白的爆炸诱导的BBB渗透性。此外,我们发现延迟的BBB渗透率和破坏的CLD5表达被一氧化氮合酶抑制剂N(G) - 尼硝基-L-精氨酸甲酯(L-Name)阻断。这些数据认为潜在的一氧化氮依赖性信号传导途径引发导致延迟BBB破坏的过程,其以脑区域特异性方式表现出。

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