成纤维细胞
细胞生物学
表皮(动物学)
细胞外基质
角质形成细胞
干细胞
皮肤当量
组织扩张
胚胎干细胞
人体皮肤
下调和上调
体内
化学
真皮
伤口愈合
体外
细胞
再生(生物学)
基质(化学分析)
生物
离体
组织工程
真皮成纤维细胞
细胞分化
解剖
细胞生长
作者
Caroline Aguilera Stewart,Ceyhun Alar,Gaia Andrea Gozza,Leslie Bargsted,Ioanna Kaklamanou,Maria Pia Polito,G Bergamini,Lorenzo Tagliazucchi,Andrea Alessandrini,Maria Paola Costi,Elena Enzo,Alejandro Sifrim,Mariaceleste Aragona
标识
DOI:10.1038/s41467-026-73979-0
摘要
Stretch-mediated tissue expansion is commonly used to grow extra skin for reconstructive surgeries. To ensure harmonious growth, the two main skin compartments, the epidermis and the dermis, must both expand in a coordinated manner. How fibroblasts respond to stretch-mediated tissue expansion in supporting keratinocyte proliferation remains unclear. Here we map the fibroblast transcriptional response to stretching in vivo and demonstrate that stretching forces fibroblasts to exit their quiescent state and restart proliferation. Concurrently, fibroblasts reduce collagen production and upregulate extracellular matrix remodelling factors, adopting a more embryonic-like program. Because embryonic fibroblasts are widely used as feeder layers to support the expansion of epidermal stem cells for clinical application, we leveraged this model to show that a low collagen state enhances epidermal stem cell self-renewal, thereby coordinating epidermal and dermal responses during skin expansion. These findings provide valuable insights to guide the design of in vivo stretch-mediated tissue expansion protocols and the production of in vitro skin grafts for clinical application. Stretch-mediated tissue expansion is widely used to generate additional skin for reconstructive purposes. Here, the authors show that mechanical stretching induces fibroblasts to adopt an embryonic-like, low-collagen state that supports skin stem cells, reminiscent of feeder layer systems used in skin graft production.
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