Angelov D N, Vasilev V A
Z Mikrosk Anat Forsch. 1989;103(5):768-80.
The distribution of the membrane-bound magnesium ions-dependent adenosine triphosphatase (Mg-ATPase) activity has been studied ultracytochemically in rat meninges by the method of Wachstein and Meisel (1957). A device specially constructed to avoid preparation artefacts has been used to obtain sections from the parietal region of the head. The meninges display an intense though irregularly distributed ATPase activity marked by depositions of electron-dense reaction product (RP) which is almost absent in the outer and middle dural layers. In the borderline zone between dura mater and the arachnoid the RP deposits are found at the outer surface of the inner dural cells and at the contact sites between these cells and the dural neurothelium. The intercellular cleft(s) between the neurothelium and the outer arachnoidal layer, occupied by an "electron-dense band", remains free of RP. The strongest accumulations of reactions granules are observed on the surface of the leptomeningeal cells of the arachnoidal space. In the contact region between the inner arachnoidal and the outer pial layers the distribution of the RP is similar to the one observed in the interface zone dura mater/arachnoid, while the pial cells themselves are definitely reaction-positive. In all meningeal vessels RP is found at the lumenal and abluminal aspects of the endothelium as well as at the cell membranes of the perivascular cells. These results emphasize the importance of the dural neurothelium for the functions of the blood-cerebrospinal fluid (CSF)-barrier between the dural blood vessels and the CSF.
采用瓦施泰因和迈泽尔(1957年)的方法,通过超微细胞化学技术研究了大鼠脑膜中膜结合型镁离子依赖性三磷酸腺苷酶(Mg-ATP酶)活性的分布。使用专门构建的装置以避免制备假象,从头部顶叶区域获取切片。脑膜显示出强烈但分布不规则的ATP酶活性,其特征是电子致密反应产物(RP)的沉积,在外硬膜层和中硬膜层几乎不存在这种沉积。在硬脑膜与蛛网膜之间的边界区域,RP沉积物见于内硬膜细胞的外表面以及这些细胞与硬脑膜神经上皮之间的接触部位。神经上皮与蛛网膜外层之间被“电子致密带”占据的细胞间裂隙没有RP。在蛛网膜下腔的软脑膜细胞表面观察到反应颗粒的最强积聚。在蛛网膜内层与软膜外层之间的接触区域,RP的分布类似于在硬脑膜/蛛网膜界面区域观察到的分布,而软膜细胞本身肯定呈反应阳性。在所有脑膜血管中,RP见于内皮的管腔面和管腔外侧面以及血管周围细胞的细胞膜。这些结果强调了硬脑膜神经上皮对于硬脑膜血管与脑脊液(CSF)之间血脑屏障功能的重要性。