Takahashi J A, Fukumoto M, Igarashi K, Oda Y, Kikuchi H, Hatanaka M
Department of Neurosurgery, Faculty of Medicine, Kyoto University, Japan.
J Neurosurg. 1992 May;76(5):792-8. doi: 10.3171/jns.1992.76.5.0792.
Basic fibroblast growth factor (FGF) is a mitogen, a differentiation factor for neuroectoderm-derived cells, and a potent angiogenic factor. The authors have previously demonstrated that the messenger ribonucleic acid of basic FGF is expressed in more than 90% of human gliomas. In the present study, they examined the expression of basic FGF in human glioma tissues using immunohistochemical techniques with a mouse monoclonal antibody against human basic FGF. They also correlated the basic FGF level with the histological grades of malignancy assessed by the number of nucleolar organizer regions (NOR's). Basic FGF was detected in 18 of 19 gliomas, whereas it was undetectable in two normal brains. The expression level of basic FGF peptide increased proportionally with the degree of malignancy. There was also a tendency for the number of NOR's in glioma cells to increase in glioma samples with a high level of basic FGF expression. Furthermore, most of the cases with increased vascularity demonstrated on cerebral angiograms showed a relatively high level of basic FGF expression of tumor cells and a large number of NOR's in endothelial cells in tumor tissues. These results suggest that basic FGF is actually produced in most gliomas and is involved in tumorigenesis and malignant progression as an autocrine growth factor. Moreover, basic FGF may play an important role in tumor neovascularization as a paracrine angiogenic factor.
碱性成纤维细胞生长因子(FGF)是一种促分裂原,是神经外胚层来源细胞的分化因子,也是一种强效血管生成因子。作者先前已证明碱性FGF的信使核糖核酸在90%以上的人类胶质瘤中表达。在本研究中,他们使用针对人类碱性FGF的小鼠单克隆抗体,通过免疫组织化学技术检测了人类胶质瘤组织中碱性FGF的表达。他们还将碱性FGF水平与通过核仁组织区(NOR)数量评估的恶性组织学分级相关联。在19例胶质瘤中有18例检测到碱性FGF,而在两个正常大脑中未检测到。碱性FGF肽的表达水平随恶性程度成比例增加。在碱性FGF表达水平高的胶质瘤样本中,胶质瘤细胞中的NOR数量也有增加的趋势。此外,脑血管造影显示血管增多的大多数病例,肿瘤细胞的碱性FGF表达水平相对较高,肿瘤组织中的内皮细胞中有大量NOR。这些结果表明,碱性FGF实际上在大多数胶质瘤中产生,并作为自分泌生长因子参与肿瘤发生和恶性进展。此外,碱性FGF作为旁分泌血管生成因子可能在肿瘤新生血管形成中起重要作用。