Ultrastructural investigation of the meningeal compartment of the blood-cerebrospinal fluid-barrier in rats and cats. A horseradish peroxidase study.

D N Angelov
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引用次数: 0

Abstract

The permeability of the meningeal blood vessels and cellular layers to horseradish peroxidase was studied 5, 10 and 15 minutes following intravasal or intraarachnoidal introduction of the marker. When applied intravasally, the horseradish peroxidase-containing solution easily passed through the walls of all meningeal vessels (dural, pial and the ones traversing the arachnoid space). The cells of the inner dural layer and dural neurotheliun delay the penetration of horseradish peroxidase into the cerebrospinal fluid-filled arachnoid space by 10 min--rats and 15 min--cats. The perivascular leptomeningeal cells and their processes restrict the passage of the marker into the arachnoid space in a similar way. These barrier functions of the leptomeningeal cells and the cells that comprise the interface zone between dura mater and the arachnoid are confirmed by experiments where the marker was injected into the arachnoid space.

大鼠和猫血脑脊液屏障脑膜隔室的超微结构研究。辣根过氧化物酶的研究。
在静脉内或蛛网膜内注入标记物5、10和15分钟后,研究了脑膜血管和细胞层对辣根过氧化物酶的通透性。当经静脉注射时,含有山葵过氧化物酶的溶液很容易穿过所有脑膜血管(硬脑膜、脑脊膜和穿越蛛网膜空间的血管)的壁。硬脑膜内层细胞和硬脑膜神经细胞延迟了辣根过氧化物酶进入充满脑脊液的蛛网膜腔的时间,大鼠延迟了10分钟,猫延迟了15分钟。血管周围的小脑膜细胞及其突以类似的方式限制标记物进入蛛网膜空间。将标记物注射到蛛网膜空间的实验证实了脑轻脑膜细胞和构成硬脑膜和蛛网膜界面区的细胞的这些屏障功能。
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