Camby I, Decaestecker C, Gordower L, DeDecker R, Kacem Y, Lemmers A, Siebert H C, Bovin N V, Wesseling P, Danguy A, Salmon I, Gabius H J, Kiss R
Laboratory of Histopathology, Faculty of Medicine, Erasmus University Hospital, Free University of Brussels, Belgium.
J Neuropathol Exp Neurol. 2001 Jan;60(1):75-84. doi: 10.1093/jnen/60.1.75.
We monitored the expression of glycan-binding sites on a panel of 10 biotinylated neoglycoconjugates by means of quantitative computer-assisted microscopy to further study the molecular mechanisms in the extensive infiltration of the surrounding brain parenchyma by most astrocytic tumors. Three distinct histological compartments were analyzed for each of the 108 astrocytic tumors (15 pilocytic astrocytomas (WHO grade I), 25 astrocytomas (WHO grade II), 30 anaplastic astrocytomas (WHO grade III), and 38 glioblastomas (WHO grade IV) included in our series. These compartments were tumors (nonperivascular tumor astrocytes), perivascular tumor astrocytes, and blood vessel walls. Clear differences were observed between the pilocytic and the diffuse astrocytic tumors. Furthermore, malignant progression in the latter category was paralleled by a decrease in cells' ability to bind distinct sugar epitopes, especially the D-GalNAc(alpha1-3)-D-GalNAc-beta1-R determinant of the Forssman pentasaccharide in tumors, the alpha-L-fucose in perivascular tumor areas, and the beta-D-glucose in tumor vessel walls. Markedly, the level of binding site expression for alpha-D-mannose decreased in the tumors, the perivascular tumor areas, and the vessel walls. These glycohistochemical results imply the functional relevance of protein-carbohydrate interactions in this tumor system.
我们通过定量计算机辅助显微镜监测了一组10种生物素化新糖缀合物上聚糖结合位点的表达,以进一步研究大多数星形细胞瘤广泛浸润周围脑实质的分子机制。对我们系列中包含的108例星形细胞瘤(15例毛细胞型星形细胞瘤(WHO I级)、25例星形细胞瘤(WHO II级)、30例间变性星形细胞瘤(WHO III级)和38例胶质母细胞瘤(WHO IV级))中的每一例分析了三个不同的组织学区域。这些区域分别是肿瘤(非血管周围肿瘤星形细胞)、血管周围肿瘤星形细胞和血管壁。在毛细胞型和弥漫性星形细胞瘤之间观察到明显差异。此外,后一类肿瘤的恶性进展伴随着细胞结合不同糖表位能力的下降,特别是肿瘤中福斯曼五糖的D-GalNAc(α1-3)-D-GalNAc-β1-R决定簇、血管周围肿瘤区域的α-L-岩藻糖以及肿瘤血管壁中的β-D-葡萄糖。值得注意的是,肿瘤、血管周围肿瘤区域和血管壁中α-D-甘露糖结合位点的表达水平均下降。这些糖组织化学结果表明了蛋白质-碳水化合物相互作用在该肿瘤系统中的功能相关性。