Inserm UMR 645 Engineering and Cutaneous Biology Team, Besançon, France.
Skin Res Technol. 2012 May;18(2):251-8. doi: 10.1111/j.1600-0846.2011.00564.x. Epub 2011 Aug 30.
BACKGROUND/AIMS: Different models of reconstructed skin are available, either to provide skin wound healing when this process is deficient, or to be used as an in vitro model. Nevertheless, few studies have focused on the mechanical properties of skin equivalent. Indeed, human skin is naturally under tension. Taking into account these features, the purpose of this work was to obtain a cellularized dermal equivalent (CDE), composed of collagen and dermal fibroblasts.
To counteract the natural retraction of CDE and to maintain it under tension, different biomaterials were tested. Selection criteria were biocompatibility, bioadhesion properties, ability to induce differentiation of fibroblasts into myofibroblasts and mechanical characterization, considering that of skin in vivo. These assays led to the selection of honeycomb of polyester. CDE constructed on this biomaterial was further characterized mechanically using tensile tests.
The results showed that mechanical features of the obtained dermal equivalent, including myofibroblasts, were similar to skin in vivo.
The original model of dermal equivalent presented herein may be a useful tool for clinical use and as an in vitro model for toxicological/pharmacological research.
背景/目的:现已有多种重建皮肤模型,可在皮肤愈合过程中提供皮肤创面,也可用作体外模型。然而,很少有研究关注皮肤等效模型的机械性能。事实上,人体皮肤天然处于张力状态。考虑到这些特点,本工作旨在获得一种细胞化真皮等效物(CDE),由胶原蛋白和真皮成纤维细胞组成。
为了对抗 CDE 的自然收缩并使其保持张力,测试了不同的生物材料。选择标准为生物相容性、生物粘附特性、诱导成纤维细胞分化为肌成纤维细胞的能力以及机械特性,同时考虑到体内皮肤的特性。这些检测导致选择了聚酯蜂窝。在此生物材料上构建的 CDE 进一步通过拉伸试验进行机械表征。
结果表明,获得的包含肌成纤维细胞的真皮等效物的机械特性与体内皮肤相似。
本文提出的新型真皮等效模型可能是临床应用和毒理学/药理学研究体外模型的有用工具。