Girolamo Francesco, Virgintino Daniela, Errede Mariella, Capobianco Carmen, Bernardini Nunzia, Bertossi Mirella, Roncali Luisa
Department of Human Anatomy and Histology, University of Bari School of Medicine, Italy.
Histochem Cell Biol. 2004 Sep;122(3):261-70. doi: 10.1007/s00418-004-0705-x. Epub 2004 Sep 15.
The involvement of the metalloprotease-2 (MMP-2) in vessel development was investigated in the human telencephalon by double immunoreactions with antibodies to the enzyme, latent (proMMP-2) and active (aMMP-2) forms, and an antibody against collagen type IV, a constitutive component of the extracellular matrix (ECM) of the vessel basal lamina. MMP-2 is expressed in both 12- and 18-week telencephalic vessels, the proenzyme being mainly localised in endothelial cells and the active form prevailing in alpha-actin-reactive periendothelial cells identified as pericytes. Endothelial cells intensely positive for aMMP-2 were revealed in some microvessels and appeared locally associated with discontinuities of the collagen basal lamina. No detectable expression of MMP-2 was observed in perivascular glial processes revealed by vimentin/glial fibrillary acidic protein immunostainings. Double immunoreactions performed to further investigate telencephalon angiogenesis have demonstrated that both the endothelial cells and pericytes strongly express vascular endothelial growth factor (VEGF). Taken together, the results indicate that MMP-2 is largely involved in human brain angiogenesis and suggest that endothelial cells and pericytes tightly interplay in both angiogenesis mechanisms, by ECM proteolysis, and angiogenesis regulation, by local (autocrine/juxtacrine) VEGF action.
通过使用针对金属蛋白酶-2(MMP-2)的酶原(proMMP-2)和活性形式(aMMP-2)的抗体以及针对IV型胶原蛋白(血管基底层细胞外基质(ECM)的组成成分)的抗体进行双重免疫反应,研究了MMP-2在人类端脑中血管发育中的作用。MMP-2在12周和18周的端脑血中均有表达,酶原主要定位于内皮细胞,而活性形式则主要存在于被鉴定为周细胞的α-肌动蛋白反应性血管周围细胞中。在一些微血管中发现了aMMP-2呈强阳性的内皮细胞,并且这些细胞局部地与胶原基底层的间断处相关。在波形蛋白/胶质纤维酸性蛋白免疫染色显示的血管周围神经胶质细胞突起中未观察到MMP-2的可检测表达。为进一步研究端脑血管生成而进行的双重免疫反应表明,内皮细胞和周细胞均强烈表达血管内皮生长因子(VEGF)。综上所述,结果表明MMP-2在很大程度上参与了人类脑血管生成,并表明内皮细胞和周细胞在血管生成机制(通过ECM蛋白水解)和血管生成调节(通过局部(自分泌/旁分泌)VEGF作用)中紧密相互作用。