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Epidermal-like architecture obtained from equine keratinocytes in three-dimensional cultures

机译:从马角质形成细胞在三维培养物中获得的表皮样结构

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Despite the high prevalence of skin conditions in the horse, there is a dearth of literature on the culture and biology of equine skin cells, and this is partially attributable to the lack of suitablein vitro skin models. The objective of this study was to develop a three-dimensional (3D) culture system that would support the proliferation and differentiation of equine keratinocytes, similar to that observed in natural epidermis. Cell monolayers were obtained from explants of equine skin and serially passaged as highly pure keratinocyte populations (> 95% of cells), based on their expression of cytokeratins, including CK-5 and CK-14, which are associated in vivo with proliferating keratinocyte populations. Explant-derived keratinocytes were seeded into Alvetex 3D tissue scaffolds for 30 days under conditions that promote cell differentiation. Ultrastructural, immunohistochemical and biochemical analyses revealed that keratinocytes within scaffolds were able to proliferate and attain tissue polarity, including differentiation into basal and suprabasal layers. The basal layer contained distinct cuboidal cells with large nuclei and stained for proliferative markers such as CK-5 and CK-14. In contrast, the suprabasal layers consisted of cells with distinct polyhedral morphology, abundant cytoplasmic processes and desmosomes indicative of stratum spinosum and distinct flattened cornified cells that expressed involucrin, a marker of terminal differentiation. Thus, keratinocytes derived from primary equine skin explants were able to attain epidermal-like architecture in culture. This novel system could provide a very useful tool for modelling skin diseases, drug testing/toxicity studies and, potentially, equine regenerative medicine. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:尽管马中皮肤状况的患病率很高,但是关于马皮肤细胞的培养和生物学的文献很少,这部分归因于缺乏合适的体外皮肤模型。这项研究的目的是开发一个三维(3D)培养系统,该系统将支持马角质形成细胞的增殖和分化,这与在自然表皮中观察到的相似。从马皮肤的外植体获得细胞单层,并根据其在体内与增殖性角化细胞群相关的细胞角蛋白(包括CK-5和CK-14)的表达,以高纯度角质形成细胞群(> 95%的细胞)顺序传代。在促进细胞分化的条件下,将源自植物的角质形成细胞播种到Alvetex 3D组织支架中30天。超微结构,免疫组织化学和生化分析表明,支架内的角质形成细胞能够增殖并达到组织极性,包括分化为基底层和基底上层。基底层包含具有大核的独特的立方体细胞,并针对诸如CK-5和CK-14的增殖标记进行了染色。相反,上基底层由具有明显的多面体形态,丰富的胞质过程和表示梭状棘层的桥粒组成的细胞组成,并具有表达整合蛋白(终末分化的标志物)的明显扁平的角质化细胞。因此,源自初级马皮肤外植体的角质形成细胞能够在培养中获得表皮样结构。这个新颖的系统可以为建模皮肤疾病,药物测试/毒性研究以及可能的马再生医学提供非常有用的工具。版权所有(c)2016 John Wiley&Sons,Ltd.

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