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天然非交联胶原海绵中不同细胞外基质分子的皮肤再生。

Dermal regeneration in native non-cross-linked collagen sponges with different extracellular matrix molecules.

机构信息

Department of Dermatology, Academic Medical Center, University of Amsterdam, Amsterdam, the Netherlands.

出版信息

Wound Repair Regen. 1994 Jan;2(1):37-47. doi: 10.1046/j.1524-475X.1994.20107.x.

Abstract

Collagenous dermal templates can prevent scarring and wound contraction in the healing of full-thickness defects. In a porcine wound model, full-thickness wounds were substituted by reconstituted and native collagen sponges in combination with autologous split-skin mesh grafts and covered with a semipermeable wound membrane. Native collagen sponges were also linked with either hyaluronic acid, elastin, or fibronectin. Reconstituted collagen matrixes, composed of cross-linked small collagen fibrils, disintegrated within a week and did not contribute to dermal regeneration, whereas native collagen matrixes, composed of intact collagen fibers, disintegrated within 2 weeks and did contribute to dermal regeneration. Addition of extracellular matrix proteins retarded the disintegration to 4 weeks. However, fibronectin-treated matrixes caused aberrant epithelization. When hyaluronic acid was added, matrixes were invaded by more fibroblasts and myofibroblasts. This process correlated with fibrosis and wound contraction. In contrast, the native collagen/elastin matrix reduced the amount of fibroblasts and myofibroblasts. This latter matrix resulted in optimal dermal regeneration and little wound contraction.

摘要

胶原真皮模板可防止全层缺陷愈合中的瘢痕形成和伤口收缩。在猪的伤口模型中,用重组和天然胶原海绵与自体分裂皮网移植物结合,并覆盖半透性伤口膜来替代全层伤口。天然胶原海绵也与透明质酸、弹性蛋白或纤维连接蛋白相连。由交联的小胶原原纤维组成的重组胶原基质在一周内分解,不会促进真皮再生,而由完整胶原纤维组成的天然胶原基质在两周内分解,并有助于真皮再生。细胞外基质蛋白的添加将分解时间延长至 4 周。然而,纤维连接蛋白处理的基质导致异常的上皮化。当添加透明质酸时,基质被更多的成纤维细胞和肌成纤维细胞浸润。这个过程与纤维化和伤口收缩有关。相比之下,天然胶原/弹性蛋白基质减少了成纤维细胞和肌成纤维细胞的数量。这种基质导致最佳的真皮再生和很少的伤口收缩。

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