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Increase in blood-brain barrier permeability does not directly induce neuronal death but may accelerate ischemic neuronal damage

机译:血脑屏障通透性的增加不会直接导致神经元死亡,但可能会加速缺血性神经元损伤

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It is observed that the increase in blood-brain barrier (BBB) permeability (BBBP) is associated with ischemic stroke and thought to trigger neuronal damage and deteriorate ischemic infarction, even though there is no experimental proof. Here, we investigated the effect of BBBP increase on brain damage, using a combination of photochemically-induced thrombotic brain damage (PIT-BD) model, a focal brain ischemic model, and transient bilateral carotid artery occlusion model (CAO, a whole brain ischemic model), in mice. In PIT-BD, BBBP increased in the region surrounding the ischemic damage from 4 h till 24 h with a peak at 8 h. On day 4, the damaged did not expand to the region with BBBP increase in mice with PIT-BD alone or with 30 min CAO at 1 h before PIT-BD, but expanded in mice with 30 min CAO at 3.5 h after PIT-BD. This expansion was paralleled with the increase in the number of apoptotic cells. These findings indicate that increase in BBBP does not cause direct neuronal death, but it facilitates ischemic neuronal loss, which was attributed, at least partially, to acceleration of apoptotic cell death.
机译:据观察,即使没有实验证据,血脑屏障(BBB)通透性(BBBP)的增加与缺血性中风有关,并被认为可触发神经元损伤并恶化缺血性脑梗塞。在这里,我们结合使用光化学诱导的血栓性脑损伤(PIT-BD)模型,局灶性脑缺血模型和短暂性双侧颈动脉闭塞模型(CAO,一种全脑缺血)来研究BBBP增加对脑损伤的影响模型)。在PIT-BD中,缺血损伤周围区域的BBBP从4 h升高到24 h,在8 h达到峰值。在第4天,损伤未扩展到单独使用PIT-BD或在PIT-BD前1 h加30分钟CAO的小鼠中BBBP增加的区域,而是在PIT-BD后3.5 h加30 min CAO的小鼠中扩大。这种膨胀与凋亡细胞数量的增加平行。这些发现表明,BBBP的增加不会引起直接的神经元死亡,但是它促进局部缺血性神经元的丧失,这至少部分归因于凋亡细胞死亡的加速。

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