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Diversity of fibroblasts--a review on implications for skin tissue engineering.

机译:成纤维细胞的多样性-对皮肤组织工程意义的综述。

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Enormous advances in the development of skin substitutes have occurred in the past 3 decades. Major obstacles yet to be overcome in the quest for an optimal skin substitute include controlling scar formation, contraction and the loss of adnexal structures. Mesenchyme-derived signals are essential for epithelial proliferation, skin morphogenesis, homeostasis and differentiation. Having previously shown that fibroblasts differentiate along a lineage from highly proliferative progenitor fibroblasts with characteristic spindle-shaped appearance to differentiated postmitotic polygonal fibrocytes, we have now established that the different subsets of fibroblasts exert significantly different patterns of cytokine release and that the highest levels of keratinocyte growth factor and transforming growth factor-beta1 expression result from differentiated fibroblasts. Coculture studies with keratinocytes reveal that postmitotic fibroblasts stimulate keratinocyte proliferation to a greater extent than progenitor fibroblasts. Acellular and fibroblast-seeded dermal substitutes have been shown to improve scarring and contraction in animal studies, the latter substitutes yielding the most favorable results. Fibroblasts from different body sites display different functional properties which may affect their suitability for dermal substitutes. Future in vivo human studies in tissue-engineered dermal substitutes will likely focus on fibroblast-seeded lattices and the impact of fibroblast subpopulations and bone marrow-derived mesenchymal stem cells on dermal regeneration.
机译:在过去的三十年中,皮肤替代品的开发取得了巨大的进步。在寻求最佳皮肤替代品方面尚待克服的主要障碍包括控制疤痕的形成,收缩和附件结构的丧失。间充质来源的信号对于上皮增殖,皮肤形态发生,体内稳态和分化至关重要。先前已证明成纤维细胞沿谱系从具有特征性纺锤形外观的高度增殖祖细胞成纤维细胞分化为分化后的有丝分裂后多角形成纤维细胞,我们现在已经确定成纤维细胞的不同子集发挥了显着不同的细胞因子释放模式,并且最高水平的角质形成细胞生长因子和转化生长因子β1的表达来自分化的成纤维细胞。与角质形成细胞的共培养研究表明,与祖细胞成纤维细胞相比,有丝分裂后成纤维细胞对角质形成细胞的刺激程度更大。在动物研究中,脱细胞和成纤维细胞播种的真皮替代品已显示出改善疤痕和收缩的作用,后者替代品产生了最有利的结果。来自不同身体部位的成纤维细胞显示出不同的功能特性,这可能会影响它们对皮肤替代品的适用性。组织工程化皮肤替代品的未来体内人类研究将可能集中于成纤维细胞的晶格以及成纤维细胞亚群和骨髓间充质干细胞对真皮再生的影响。

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