首页> 外文OA文献 >Extracellular matrix characterization during healing of full-thickness wounds treated with a collagen/elastin dermal substitute shows improved skin regeneration in pigs
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Extracellular matrix characterization during healing of full-thickness wounds treated with a collagen/elastin dermal substitute shows improved skin regeneration in pigs

机译:用胶原蛋白/弹性蛋白真皮替代物治疗的全层伤口愈合期间的细胞外基质表征显示猪的皮肤再生得到改善

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摘要

We investigated the architecture of the extracellular matrix (ECM) during healing of full-thickness wounds in the pig. Two different treatments, one based on epidermal transplantation (split skin mesh grafts, SP wounds) and one consisting of a combination of epidermal transplantation and a dermal matrix substitute (MA wounds) were compared. The dermal matrix consisted of native bovine collagen coated with elastin hydrolysate. The latter treatment reduced wound contraction and improved tissue regeneration. The expression patterns of fibronectin, von Willebrand factor, laminin, chondroitin sulfate, and elastin, detected by immunohistochemistry, were examined in time and indicated different stages of healing. During the early phase of healing the dermal matrix induced more granulation tissue, a different fibronectin expression pattern, and rapid vascular cell ingrowth (von Willebrand factor). Furthermore, in the MA wounds chondroitin sulfate was detected earlier in the basement membrane and fibronectin staining disappeared more rapidly. During later stages of healing, chondroitin sulfate expression was selective for areas in which ECM remodeling was active; in these specific areas elastin staining reappeared. ECM remodeling and elastin regeneration occurred both in the upper and lower dermis for the MA wounds but only in the upper dermis for the SP wounds. Electron microscopic evaluation of the wounds after 2 weeks showed many myofibroblasts in the SP wounds, whereas in the MA wounds cells associated with the dermal matrix had characteristics of normal fibroblasts. The results suggest that the biodegradable dermal matrix served as a template for dermal tissue regeneration, allowed faster regeneration, and improved the quality of healing in large full-thickness skin defects
机译:我们研究了猪全层伤口愈合过程中细胞外基质(ECM)的体系结构。比较了两种不同的治疗方法,一种是基于表皮移植(皮肤网状移植物,SP伤口),另一种是由表皮移植和真皮基质替代物组合而成(MA伤口)。真皮基质由涂有弹性蛋白水解物的天然牛胶原蛋白组成。后一种治疗减少了伤口收缩并改善了组织再生。通过免疫组织化学检测了纤连蛋白,血管性血友病因子,层粘连蛋白,硫酸软骨素和弹性蛋白的表达模式,并及时检查了它们的不同愈合阶段。在愈合的早期阶段,真皮基质诱导更多的肉芽组织,不同的纤连蛋白表达模式和快速的血管细胞向内生长(von Willebrand因子)。此外,在MA伤口中,较早在基膜中检测到了硫酸软骨素,而纤连蛋白的染色消失得更快。在康复的后期阶段,硫酸软骨素的表达对ECM重塑活跃的区域具有选择性。在这些特定区域,弹性蛋白染色再次出现。对于MA伤口,ECM重塑和弹性蛋白再生均发生在上真皮和下真皮,而对于SP伤口,仅在上真皮发生。 2周后对伤口进行电子显微镜评估,发现SP伤口中有许多成肌纤维细胞,而MA伤口中与真皮基质相关的细胞具有正常的成纤维细胞特征。结果表明,可生物降解的真皮基质可作为真皮组织再生的模板,可加快再生速度,并改善大型全层皮肤缺损的愈合质量

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