Masson Véronique, de la Ballina Laura Rodriguez, Munaut Carine, Wielockx Ben, Jost Maud, Maillard Catherine, Blacher Silvia, Bajou Khalid, Itoh Takeshi, Itohara Shige, Werb Zena, Libert Claude, Foidart Jean-Michel, Noël Agnès
Laboratory of Tumor and Development Biology, University of Liège, Liège, Belgium.
FASEB J. 2005 Feb;19(2):234-6. doi: 10.1096/fj.04-2140fje. Epub 2004 Nov 18.
The matrix metalloproteinases (MMPs) play a key role in normal and pathological angiogenesis by mediating extracellular matrix degradation and/or controlling the biological activity of growth factors, chemokines, and/or cytokines. Specific functions of individual MMPs as anti- or proangiogenic mediators remain to be elucidated. In the present study, we assessed the impact of single or combined MMP deficiencies in in vivo and in vitro models of angiogenesis (malignant keratinocyte transplantation and the aortic ring assay, respectively). MMP-9 was predominantly expressed by neutrophils in tumor transplants, whereas MMP-2 and MMP-3 were stromal. Neither the single deficiency of MMP-2, MMP-3, or MMP-9, nor the combined absence of MMP-9 and MMP-3 did impair tumor invasion and vascularization in vivo. However, there was a striking cooperative effect in double MMP-2:MMP-9-deficient mice as demonstrated by the absence of tumor vascularization and invasion. In contrast, the combined lack of MMP-2 and MMP-9 did not impair the in vitro capillary outgrowth from aortic rings. These results point to the importance of a cross talk between several host cells for the in vivo tumor promoting and angiogenic effects of MMP-2 and MMP-9. Our data demonstrate for the first time in an experimental model that MMP-2 and MMP-9 cooperate in promoting the in vivo invasive and angiogenic phenotype of malignant keratinocytes.
基质金属蛋白酶(MMPs)通过介导细胞外基质降解和/或控制生长因子、趋化因子及细胞因子的生物学活性,在正常及病理性血管生成中发挥关键作用。单个MMP作为抗血管生成或促血管生成介质的具体功能仍有待阐明。在本研究中,我们分别在血管生成的体内和体外模型(恶性角质形成细胞移植和主动脉环试验)中评估了单个或联合MMP缺陷的影响。在肿瘤移植中,MMP-9主要由中性粒细胞表达,而MMP-2和MMP-3则由基质表达。MMP-2、MMP-3或MMP-9的单基因缺陷,以及MMP-9和MMP-3的联合缺失,均未损害体内肿瘤的侵袭和血管生成。然而,在MMP-2和MMP-9双基因缺陷小鼠中观察到显著的协同效应,表现为肿瘤血管生成和侵袭缺失。相比之下,MMP-2和MMP-9的联合缺失并未损害体外主动脉环的毛细血管生长。这些结果表明,几种宿主细胞之间的相互作用对于MMP-2和MMP-9在体内促进肿瘤和血管生成的作用至关重要。我们的数据首次在实验模型中证明,MMP-2和MMP-9协同促进恶性角质形成细胞在体内的侵袭和血管生成表型。