Fourtanier A Y, Courty J, Muller E, Courtois Y, Prunieras M, Barritault D
J Invest Dermatol. 1986 Jul;87(1):76-80. doi: 10.1111/1523-1747.ep12523578.
Eye-derived growth factor (EDGF) has been found in several ocular tissues and shown to be able to stimulate the in vitro proliferation of cells from various tissues and organisms. It had already been shown that EDGF differs biochemically and biologically from other growth factors such as epidermal growth factor (EGF) and fibroblast growth factor in that it is the only one that can stimulate the in vitro growth of human adult keratinocytes. Moreover EDGF stimulates reepithelialization and neovascularization. In this paper we report data concerning the effect on the rate of epidermal wound healing in guinea pigs of different extracts obtained from adult bovine retina. Our results show that EDGF can significantly increase the rate of reepithelialization when epidermis is detached from dermis and removed after induction of a blister. The doses used were comparable to the ones used to obtain maximal increase of cell proliferation in vitro. However no attempt was made to further investigate the mechanism accounting for the observed wound healing. At 24 h, control wounds maintained under occlusive dressing had only about 50% of their surface covered with cells as opposed to EDGF-treated wounds which were covered up to about 80% (p = 0.05). On the other hand, EGF does not increase the rate of wound healing in this model even at 1000-fold higher doses than those used in in vitro bioassays. Although EDGF is still not purified to homogeneity and another 10- to 100-fold purification might be necessary to achieve homogeneity, our results suggest that EDGF may find therapeutic applications as a potent in vivo epidermal wound healing agent.
眼源生长因子(EDGF)已在多种眼组织中被发现,并显示出能够刺激来自各种组织和生物体的细胞在体外增殖。已经表明,EDGF在生化和生物学特性上与其他生长因子如表皮生长因子(EGF)和成纤维细胞生长因子不同,因为它是唯一能够刺激人类成年角质形成细胞体外生长的因子。此外,EDGF还能刺激上皮再形成和新血管形成。在本文中,我们报告了关于从成年牛视网膜获得的不同提取物对豚鼠表皮伤口愈合速度影响的数据。我们的结果表明,当表皮与真皮分离并在诱导水疱后去除时,EDGF能显著提高上皮再形成的速度。所用剂量与在体外获得细胞增殖最大增加量时所用的剂量相当。然而,并未尝试进一步研究导致观察到的伤口愈合的机制。在24小时时,用封闭敷料处理的对照伤口只有约50%的表面被细胞覆盖,而经EDGF处理的伤口则被覆盖了约80%(p = 0.05)。另一方面,即使EGF的剂量比体外生物测定中所用剂量高1000倍,在该模型中也不会提高伤口愈合速度。尽管EDGF尚未纯化至同质,可能还需要再进行10至100倍的纯化才能达到同质,但我们的结果表明,EDGF作为一种有效的体内表皮伤口愈合剂可能具有治疗应用价值。