Lawrenson J G, Cassella J P, Hayes A J, Firth J A, Allt G
Reta Lila Weston Institiute of Neurological Studies, University College London, UK.
J Anat. 2000 Jan;196 ( Pt 1)(Pt 1):55-60. doi: 10.1046/j.1469-7580.2000.19610055.x.
There is evidence that the endothelial cell (EC) glycocalyx is a significant determinant of vascular permeability, acting as a charge-size filter to permeant molecules. We have therefore examined its oligosaccharide composition in 3 classes of microvessel with differing permeabilities. EC in rat brain, retina and myocardium were labelled with a panel of lectins and subjected to a semiquantitative analysis. Surprisingly, no substantial differences were evident for any lectin labelling between the 3 microvessel types despite their marked morphophysiological diversity. In particular, all showed substantial sialic acid expression, with Maackia amurensis (MAA) labelling sialic acid in an alpha2-3 linkage to beta-galactose and Sambucus nigra (SNA) recognising sialic acid in an alpha2-6 linkage to beta-galactose. Arachis hypogaea (PNA) binding after neuraminidase digestion indicated the presence of Gal beta1-3GalNAc attached to terminal sialic acid. The results therefore show that the sequences NeuNAc alpha2-3Gal beta1-3GalNAc and NeuNAc alpha2-6Gal beta1-3GalNAc are strongly expressed in the 3 microvessel types irrespective of their permeability properties. This homogeneity suggests that these lectin ligands may be involved in a common set of EC functions, e.g. cell:cell and cell:matrix interactions. However, we cannot rule out the possibility that glycocalyx differences may exist between vessels in the paracellular cleft which may alter its filtration properties.
有证据表明,内皮细胞(EC)糖萼是血管通透性的重要决定因素,可作为对渗透分子的电荷大小过滤器。因此,我们研究了3种具有不同通透性的微血管的寡糖组成。用一组凝集素标记大鼠脑、视网膜和心肌中的内皮细胞,并进行半定量分析。令人惊讶的是,尽管这3种微血管类型在形态生理上有明显差异,但任何凝集素标记在它们之间都没有明显的实质性差异。特别是,所有样本都显示出大量唾液酸表达,其中马桑(MAA)标记与β-半乳糖以α2-3连接的唾液酸,黑接骨木(SNA)识别与β-半乳糖以α2-6连接的唾液酸。神经氨酸酶消化后花生凝集素(PNA)结合表明存在连接于末端唾液酸的Galβ1-3GalNAc。因此,结果表明,无论其通透性如何,NeuNAcα2-3Galβ1-3GalNAc和NeuNAcα2-6Galβ1-3GalNAc序列在这3种微血管类型中均有强烈表达。这种同质性表明,这些凝集素配体可能参与了一组共同的内皮细胞功能,例如细胞:细胞和细胞:基质相互作用。然而,我们不能排除在细胞旁裂隙中的血管之间可能存在糖萼差异,这可能会改变其过滤特性的可能性。