Nien Yih-Dar, Han Yuan-Ping, Tawil Bill, Chan Linda S, Tuan Tai-Lan, Garner Warren L
Division of Plastic Surgery, University of Southern California, Keck School of Medicine, Los Angeles, CA 90033, USA.
Wound Repair Regen. 2003 Sep-Oct;11(5):380-5. doi: 10.1046/j.1524-475x.2003.11511.x.
Extracellular matrix changes in composition and organization as it transitions from the provisional matrix of the fibrin/platelet plug to collagen scar in healed wounds. The manner in which individual matrix proteins affect these activities is not well established. In this article we describe the interactions of two important extracellular matrix components, fibrin and collagen, using an in vitro model of wound contraction, the fibroblast-populated collagen lattice. We utilized different fibrinogen sources and measured tissue reorganization in floating and tensioned collagen lattices. Our results showed that both fibrin and fibrinogen decreased the contraction of fibroblast populated collagen lattices in a dose-dependent manner. Polymerization of fibrinogen to fibrin using thrombin had no effect on this inhibition. Further, there was no effect due to changes in protein concentration, alternate components of the fibrin sealant, or the enzymatic action of thrombin. These results suggest that the initial stability of the fibrin provisional matrix is due to the fibrin, because this protein appears to inhibit contraction of the matrix. This may be important in the early phases of wound healing when clot stability is vital for hemostasis. Later, as fibrin is replaced by collagen, wound contraction can occur.
细胞外基质在从纤维蛋白/血小板凝块的临时基质转变为愈合伤口中的胶原瘢痕时,其组成和组织结构会发生变化。单个基质蛋白影响这些活动的方式尚未完全明确。在本文中,我们使用伤口收缩的体外模型——成纤维细胞填充的胶原晶格,描述了两种重要的细胞外基质成分,即纤维蛋白和胶原蛋白之间的相互作用。我们使用了不同的纤维蛋白原来源,并测量了漂浮和张紧的胶原晶格中的组织重组。我们的结果表明,纤维蛋白和纤维蛋白原均以剂量依赖的方式降低了成纤维细胞填充的胶原晶格的收缩。使用凝血酶将纤维蛋白原聚合成纤维蛋白对这种抑制作用没有影响。此外,蛋白质浓度的变化、纤维蛋白密封剂的替代成分或凝血酶的酶促作用均无影响。这些结果表明,纤维蛋白临时基质的初始稳定性归因于纤维蛋白,因为这种蛋白质似乎抑制了基质的收缩。这在伤口愈合的早期阶段可能很重要,因为凝块稳定性对于止血至关重要。后来,随着纤维蛋白被胶原蛋白取代,伤口收缩就会发生。