Costello Lydia, Fullard Nicola, Roger Mathilde, Bradbury Steven, Dicolandrea Teresa, Isfort Robert, Bascom Charles, Przyborski Stefan
Department of Biosciences, Durham University, Durham, UK.
Mason Business Centre, Procter & Gamble, Mason, OH, USA.
Methods Mol Biol. 2019;1993:107-122. doi: 10.1007/978-1-4939-9473-1_9.
Human skin equivalents (HSEs) are a valuable tool for both academic and industrial laboratories to further the understanding of skin physiology and associated diseases. Over the last few decades, there have been many advances in the development of HSEs that successfully recapitulate the structure of human skin in vitro; however a main limitation is variability due to the use of complex protocols and exogenous extracellular matrix (ECM) proteins. We have developed a robust and unique full-thickness skin equivalent that is highly reproducible due to the use of a consistent scaffold, commercially available cells, and defined low-serum media. The Alvetex scaffold technology allows fibroblasts to produce their own endogenous ECM proteins within the scaffold, which alleviates the need for exogenous collagen, and supports the differentiation and stratification of the epidermis. Our full-thickness skin equivalent is generated using a detailed step-by-step protocol, which sequentially forms the multilayered structure of human skin in vitro. This model can be adapted for many downstream applications such as disease modeling and testing of active compounds for cosmetics.
人类皮肤替代物(HSEs)是学术和工业实验室深入了解皮肤生理学及相关疾病的宝贵工具。在过去几十年里,HSEs的开发取得了许多进展,成功在体外重现了人类皮肤的结构;然而,一个主要限制是由于使用复杂方案和外源性细胞外基质(ECM)蛋白而导致的变异性。我们开发了一种强大且独特的全层皮肤替代物,由于使用了一致的支架、市售细胞和特定的低血清培养基,具有高度可重复性。Alvetex支架技术使成纤维细胞能够在支架内产生自身的内源性ECM蛋白,从而无需外源性胶原蛋白,并支持表皮的分化和分层。我们的全层皮肤替代物是使用详细的分步方案生成的,该方案在体外依次形成人类皮肤的多层结构。该模型可适用于许多下游应用,如疾病建模和化妆品活性化合物测试。