Camussi G, Montrucchio G, Lupia E, Soldi R, Comoglio P M, Bussolino F
Department of Clinical and Biological Science, Second Faculty of Medicine, University of Pavia, Varese, Italy.
J Immunol. 1997 Feb 1;158(3):1302-9.
This study shows that the neoangiogenesis induced by hepatocyte growth factor (HGF) was associated with a local synthesis of platelet-activating factor (PAF) and was inhibited by the specific PAF receptor antagonist WEB 2170 in a murine model in which matrigel was injected s.c. as a substratum for angiogenesis. The synthesis of PAF was concomitant with the early migration of endothelial cells and infiltration of MAC-1-positive macrophages. Infiltration of lymphocytes and polymorphonuclear leukocytes was never observed. In vitro studies demonstrated that mouse peritoneal macrophages, but not two murine microvascular endothelial cell lines or human and bovine endothelial cells from large vessels, synthesized PAF after stimulation with HGF. Furthermore, macrophages expressed the transcript of HGF receptor encoded by the MET proto-oncogene and migrated after HGF challenge. The binding of HGF to its receptor was followed by the activation of the receptor tyrosine kinase domain and phosphorylation of the beta subunit. Leukocyte depletion with 5-fluorouracil and anti-MAC-1 Ab added to matrigel prevented the infiltration of macrophages, the synthesis of PAF and the angiogenesis induced by HGF. PAF extracted and purified from mice challenged with HGF induced a rapid angiogenic response, inhibited by WEB 2170. These results suggest that the angiogenic effect of HGF in vivo is mediated, at least in part, by PAF synthesized from macrophages infiltrating the matrigel plug.
本研究表明,在以基质胶皮下注射作为血管生成基质的小鼠模型中,肝细胞生长因子(HGF)诱导的新生血管生成与血小板活化因子(PAF)的局部合成有关,并被特异性PAF受体拮抗剂WEB 2170抑制。PAF的合成与内皮细胞的早期迁移以及MAC-1阳性巨噬细胞的浸润同时发生。从未观察到淋巴细胞和多形核白细胞的浸润。体外研究表明,小鼠腹腔巨噬细胞在用HGF刺激后可合成PAF,而两种小鼠微血管内皮细胞系以及人及牛的大血管内皮细胞则不能。此外,巨噬细胞表达由MET原癌基因编码的HGF受体转录本,并在HGF刺激后迁移。HGF与其受体结合后,受体酪氨酸激酶结构域被激活,β亚基发生磷酸化。向基质胶中添加5-氟尿嘧啶和抗MAC-1抗体进行白细胞清除,可阻止巨噬细胞浸润、PAF合成以及HGF诱导的血管生成。从用HGF攻击的小鼠中提取并纯化的PAF可诱导快速血管生成反应,并被WEB 2170抑制。这些结果表明,HGF在体内的血管生成作用至少部分是由浸润基质胶栓的巨噬细胞合成的PAF介导的。