Quantitative analysis of blood-brain barrier damage in two models of experimental head injury in the rat.

W A van den Brink, B O Santos, A Marmarou, C J Avezaat
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引用次数: 26

Abstract

The integrity of the blood-brain barrier was studied in a new model of closed head injury, and in an established model of fluid percussion injury, in the rat. Brain injury in this new model is induced by impact and acceleration of the protected rat skull. Severe hypertension is not a characteristic of this new model as compared to the tremendous surge following direct dural percussion. This is important because of the well known sensitivity of the cerebral microvasculature for acute hypertension. Using a radioactive tracer technique the dysfunction of the barrier was quantified. It is shown that the BBB is temporarily damaged due to trauma, subsequent arterial pressure surge, as seen in the percussed animals, deteriorates the dysfunction of the barrier even further. This study indicates that vascular damage is a key event following head injury. Yet the concomitant basic pathophysiological sequelae of different models must be considered when studying barrier damage and cerebral edema following brain injury. Time window studies of the barrier indicate that the barrier seals within a few hours following severe concussive head injury, and in the absence of a hypertensive surge.

两种大鼠实验性颅脑损伤模型血脑屏障损伤的定量分析。
在一种新的闭合性颅脑损伤模型和一种已建立的大鼠液体撞击损伤模型中,研究了血脑屏障的完整性。该模型的脑损伤是由受保护大鼠颅骨的冲击和加速度引起的。与直接硬脑膜撞击后的巨大激增相比,严重的高血压并不是这种新模式的特征。这一点很重要,因为众所周知,大脑微血管对急性高血压非常敏感。利用放射性示踪技术对屏障的功能障碍进行了量化。研究表明,血脑屏障因创伤而暂时受损,随后的动脉压激增,如在受撞击的动物中所见,进一步恶化了血脑屏障的功能障碍。这项研究表明,血管损伤是脑损伤后的一个关键事件。然而,在研究脑损伤后屏障损伤和脑水肿时,必须考虑不同模型所伴随的基本病理生理后遗症。脑屏障的时间窗研究表明,脑屏障在严重脑震荡后的几个小时内封闭,并且没有高血压激增。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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