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Dermal Templates Support Epidermal Regeneration and Maturation Regardless of Cell Donor Age

真皮 成纤维细胞 包皮 细胞外基质 伤口愈合 再生(生物学) 真皮成纤维细胞 化学 男科 细胞生物学 细胞 基质(化学分析) 病理 细胞生长 Ⅰ型胶原 生物 多糖 电池类型 细胞培养 活力测定 表皮(动物学) 基质金属蛋白酶 组织工程 结缔组织 皮肤修复 免疫组织化学 纤维化 免疫学 前胶原肽酶
作者
Autumn Campbell,Divya Sridharan,Britani N. Blackstone,Sajjad Ashraf,Dorothy M. Supp,M Martin- Khan,Heather M. Powell
出处
期刊:Tissue Engineering Part A [Mary Ann Liebert, Inc.]
标识
DOI:10.1177/19373341251409800
摘要

To provide an optimal wound bed for epidermal regeneration, a viable dermis is needed. As the dermis is destroyed in full-thickness burns, dermal templates (DTs) are used to create a healthy dermis for grafting and other procedures. Neonatal foreskin has exclusively been used as the source of dermal fibroblasts in commercial DTs, as the tissue is readily available and because these cells are assumed to be more proliferative and capable of superior wound healing compared with adult fibroblasts. The goal of this study was to assess the function of adult fibroblasts compared with neonatal fibroblasts for DT construction and epidermal regeneration. Primary fibroblasts were isolated from neonatal or adult surgical discard tissue (n = 4 each). Expression of collagen type 1 A1 (COL1A1) and matrix metalloprotease 1 (MMP1), MMP3, and MMP9 was assessed for each cell strain, and proliferation was quantified in two-dimensional (2D) cultures and 3D DTs. Subsequently, DTs were constructed from each cell strain by inoculating fibroblasts onto electrospun collagen scaffolds. DT contraction, extracellular matrix remodeling, and cell viability were assessed over 7 days in culture, and the ability of the DTs to promote epidermal regeneration was assessed using primary adult keratinocytes. No differences in gene expression were observed in neonatal versus adult fibroblasts in 2D culture. Neonatal fibroblasts were significantly more proliferative at day 7 when cultured in 2D; however, fibroblast proliferation was independent of donor age in 3D culture. Neonatal DTs contracted significantly more than adult DTs (68.8% ± 6.2% vs. 91.7% ± 4.2% original wound area, respectively). Upon seeding with keratinocytes, a robust, stratified epidermis formed in all DT groups, with no statistically significant differences in dermal or epidermal thickness, basal keratinocyte proliferation, epidermal barrier function, or basement membrane deposition. Analysis of gene expression revealed modest differences in the expression of MMP1, COL1A1, and ACTA2 in neonatal versus adult engineered skin in vitro, which were not associated with any discernable histological differences. These results indicate that the fabrication of DTs with adult fibroblasts can promote epidermal regeneration equivalent to that of neonatal fibroblasts but with less in vitro contraction, which may enable the treatment of larger wound areas.
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