Vorbrodt A W
Acta Neuropathol. 1986;70(2):103-11. doi: 10.1007/BF00691427.
Lectin-binding sites located on the endothelial cell (EC) surfaces in unaltered, leaking and resorbing micro-blood vessels (MBVs) in cryo-injured cat brain were studied. Lectin or glycoprotein-gold complexes and brain samples embedded in hydrophilic resin Lowicryl K4M were used. The lectins tested recognize the following residues: beta-D-galactosyl (Ricinus communis agglutinin 120, RCA and peanut agglutinin, PNA), sialyl (Limax flavus agglutinin), N-acetyl-D-galactosaminyl (Helix pomatia agglutinin and soybean agglutinin, SBA), alpha-D-glucosyl and alpha-D-mannosyl (concanavalin A). The luminal front was labeled with SBA, and both fronts of the EC were labeled with PNA only after neuraminidase digestion. The most abundant and regularly distributed on both fronts of the EC were beta-D-galactosyl residues (RCA). These residues were also most affected in altered MBVs. The labeling of sialic acid residues was less pronounced on both sides of the EC. Following alteration of the function of the blood-brain barrier by cold-lesion injury, in leaking MBVs which represent increased luminal transport, we observed a conspicuous diminution of the labeling of the luminal surface of the EC with some lectins. On the other hand, in resorbing blood vessels located in the area of edema, where a presumably reverse (abluminal) transport occurs, major changes in the distribution of lectin-binding sites occurred on the abluminal front of the EC and in the basement membrane. The results reported here indicate that luminal and abluminal fronts of the EC change their properties in various functional conditions of MBVs, and that these changes can also be a reflection of functional polarity of brain endothelium.
研究了猫脑冷冻损伤后未改变、渗漏和吸收的微血管(MBV)内皮细胞(EC)表面的凝集素结合位点。使用了凝集素或糖蛋白-金复合物以及包埋在亲水性树脂Lowicryl K4M中的脑样本。所测试的凝集素识别以下残基:β-D-半乳糖基(蓖麻凝集素120、RCA和花生凝集素、PNA)、唾液酸基(黄蛞蝓凝集素)、N-乙酰-D-半乳糖胺基(苹果蜗牛凝集素和大豆凝集素、SBA)、α-D-葡萄糖基和α-D-甘露糖基(伴刀豆球蛋白A)。仅在神经氨酸酶消化后,管腔面用SBA标记,EC的两个面均用PNA标记。在EC的两个面上最丰富且分布规律的是β-D-半乳糖基残基(RCA)。这些残基在改变的MBV中也受到最大影响。EC两侧唾液酸残基的标记不太明显。在冷损伤导致血脑屏障功能改变后,在代表管腔运输增加的渗漏MBV中,我们观察到一些凝集素对EC管腔表面的标记明显减少。另一方面,在水肿区域的吸收性血管中,可能发生反向(无腔面)运输,凝集素结合位点的分布在EC的无腔面和基底膜上发生了主要变化。此处报道的结果表明,在MBV的各种功能状态下,EC的管腔面和无腔面会改变其特性,并且这些变化也可能反映脑内皮的功能极性。