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A methodology for the production of microfabricated electrospun membranes for the creation of new skin regeneration models

机译:用于生产微制造电纺膜的方法,用于创建新的皮肤再生模型

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摘要

The continual renewal of the epidermis is thought to be related to the presence of populations of epidermal stem cells residing in physically protected microenvironments (rete ridges) directly influenced by the presence of mesenchymal fibroblasts. Current skin in vitro models do acknowledge the influence of stromal fibroblasts in skin reorganisation but the study of the effect of the rete ridge-microenvironment on epidermal renewal still remains a rich topic for exploration. We suggest there is a need for the development of new in vitro models in which to study epithelial stem cell behaviour prior to translating these models into the design of new cell-free biomaterial devices for skin reconstruction. In this study, we aimed to develop new prototype epidermal-like layers containing pseudo-rete ridge structures for studying the effect of topographical cues on epithelial cell behaviour. The models were designed using a range of three-dimensional electrospun microfabricated scaffolds. This was achieved via the utilisation of polyethylene glycol diacrylate to produce a reusable template over which poly(3-hydrroxybutyrate- co -3-hydroxyvalerate) was electrospun. Initial investigations studied the behaviour of keratinocytes cultured on models using plain scaffolds (without the presence of intricate topography) versus keratinocytes cultured on scaffolds containing microfeatures.
机译:表皮的持续更新被认为与存在于物理保护的微环境(Rete脊)直接受到间充质成纤维细胞的存在的表皮干细胞的存在有关。目前的皮肤在体外模型确实承认基质成纤维细胞在皮肤重组中的影响,但重温脊髓微环境对表皮重新的影响仍然是探索的丰富课题。我们建议在将这些模型转化为用于皮肤重建的新细胞生物材料设计之前,需要开发新的体外模型,从而研究上皮干细胞行为。在这项研究中,我们旨在开发含有伪rete脊结构的新型模板层,用于研究地形提示对上皮细胞行为的影响。该模型采用一系列三维Electrom淘微型辅助支架设计。这是通过利用聚乙二醇二丙烯酸酯来实现可重复使用的模板,其中聚(3-叔丁丁酸酯-CO-CO-3-羟基戊烷)是电纺。初步调查研究了使用普通支架(没有复杂形貌的存在)对模型培养的角质形成细胞的行为与含有微泡的支架上培养的角质形成细胞。

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