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An in vitro skin model to study the effect of mesenchymal stem cells in wound healing and epidermal regeneration

机译:体外皮肤模型研究间充质干细胞在伤口愈合和表皮再生中的作用

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The development of new wound therapies, such as bioengineered skin equivalents, is an ongoing process. Multi-potent mesenchymal stem cells (MSCs) give rise to many tissue lineages and have been implicated in wound healing making them a potential candidate for cell-based bioengineered products for injured tissue. In this study, we investigated the mesenchymal/epithelial interactions of cultured MSCs in comparison to cultured fibroblasts on epidermal proliferation, differentiation, and extracellular matrix (ECM) protein expression using a de-epidermalized dermis (DED) skin model. We also studied whether MSCs can transdifferentiate to keratinocytes using the same model. Keratinocytes were cultured on unseeded DED or DED populated with fibroblasts or MSCs at an air-liquid interface to induce epidermal differentiation. Fibroblasts or MSCs were also seeded on the papillary surface of the DED alone or on the reticular surface. General histology and immunostaining was performed on the skin equivalents to examine the expression of pan keratin (K) (K1, K5, K6, and K18) and protein markers for epidermal differentiation (K10), hyperproliferation (K6), proliferation (PCNA), ECM component (collagen type IV), and mesenchymal marker (vimentin). Keratinocyte-fibroblast skin model and keratinocyte-MSC skin model both displayed an epidermal phenotype similar to epidermis in vivo. Positive expression of proliferation, differentiation and ECM protein markers was observed. MSCs failed to adopt an epithelial phenotype in the DED skin model. Our findings highlight the potential use of MSCs in bioengineered tissue for the treatment of wounds.
机译:诸如生物工程皮肤等效物的新伤口疗法的开发是一个持续的过程。多能性间充质干细胞(MSCs)产生许多组织谱系,并已参与伤口愈合,使其成为受伤组织基于细胞的生物工程产品的潜在候选者。在这项研究中,我们使用去表皮真皮(DED)皮肤模型研究了培养的MSC与培养的成纤维细胞之间的间充质/上皮相互作用对表皮增殖,分化和细胞外基质(ECM)蛋白表达的影响。我们还研究了MSC是否可以使用同一模型转分化为角质形成细胞。将角质形成细胞在气液界面上的无种子DED或成纤维细胞或MSC上培养的DED上培养,以诱导表皮分化。成纤维细胞或MSCs也可以单独接种在DED的乳头表面或网状表面。对皮肤等同物进行一般组织学和免疫染色,以检查泛角蛋白(K)(K1,K5,K6和K18)的表达以及表皮分化(K10),过度增殖(K6),增殖(PCNA), ECM成分(IV型胶原)和间充质标记物(波形蛋白)。角质形成细胞-成纤维细胞皮肤模型和角质形成细胞-MSC皮肤模型均表现出类似于体内表皮的表皮表型。观察到增殖,分化和ECM蛋白标志物的阳性表达。 MSC在DED皮肤模型中未采用上皮表型。我们的发现突出了在生物工程组织中用于治疗伤口的MSC的潜在用途。

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