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Artificial Skin - Culturing of Different Skin Cell Lines for Generating an Artificial Skin Substitute on Cross-Weaved Spider Silk Fibres

机译:人造皮肤-培养不同的皮肤细胞系以在交叉编织的蜘蛛丝纤维上生成人造皮肤替代物

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摘要

Background: In the field of Plastic Reconstructive Surgery the development of new innovative matrices for skin repair is in urgent need. The ideal biomaterial should promote attachment, proliferation and growth of cells. Additionally, it should degrade in an appropriate time period without releasing harmful substances, but not exert a pathological immune response. Spider dragline silk from Nephila spp meets these demands to a large extent. Methodology/Principal Findings: Native spider dragline silk, harvested directly out of Nephila spp spiders, was woven on steel frames. Constructs were sterilized and seeded with fibroblasts. After two weeks of cultivating single fibroblasts, keratinocytes were added to generate a bilayered skin model, consisting of dermis and epidermis equivalents. For the next three weeks, constructs in co-culture were lifted on an originally designed setup for air/liquid interface cultivation. After the culturing period, constructs were embedded in paraffin with an especially developed program for spidersilk to avoid supercontraction. Paraffin cross-sections were stained in Haematoxylin & Eosin (H&E) for microscopic analyses. Conclusion/Significance: Native spider dragline silk woven on steel frames provides a suitable matrix for 3 dimensional skin cell culturing. Both fibroblasts and keratinocytes cell lines adhere to the spider silk fibres and proliferate. Guided by the spider silk fibres, they sprout into the meshes and reach confluence in at most one week. A well-balanced, bilayered cocultivation in two continuously separated strata can be achieved by serum reduction, changing the medium conditions and the cultivation period at the air/liquid interphase. Therefore spider silk appears to be a promising biomaterial for the enhancement of skin regeneration.
机译:背景:在整形外科领域,迫切需要开发用于皮肤修复的新型创新基质。理想的生物材料应促进细胞的附着,增殖和生长。此外,它应在适当的时间内降解而不释放有害物质,但不会产生病理性免疫反应。 Nephila spp的蜘蛛式拉铲丝能够在很大程度上满足这些要求。方法/主要发现:直接从Nephila spp蜘蛛中收获的原生蜘蛛拉丝丝绸被编织在钢架上。将构建体灭菌并接种成纤维细胞。培养单个成纤维细胞两周后,添加角质形成细胞以生成由真皮和表皮等效物组成的双层皮肤模型。在接下来的三周中,将共培养的构建物移至最初设计的用于气/液界面培养的装置上。培养期后,用特别开发的蜘蛛丝程序将构建体包埋在石蜡中,以避免超收缩。石蜡横截面在苏木精和曙红(H&E)中染色以进行显微镜分析。结论/意义:在钢架上编织的天然蜘蛛拉丝丝绸为3D皮肤细胞培养提供了合适的基质。成纤维细胞和角质形成细胞细胞系均粘附在蜘蛛丝纤维上并增殖。在蜘蛛丝纤维的引导下,它们发芽进入网孔,并在最多一周的时间内汇合。通过减少血清,改变气液两相间的培养基条件和培养时间,可以在两个连续分离的层中实现均衡的双层共培养。因此,蜘蛛丝似乎是增强皮肤再生的有前途的生物材料。

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