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在猪伤口模型中的评估和用于闭合全层伤口的自体异种皮肤构建体的长期临床评估。

Evaluation in a porcine wound model and long-term clinical assessment of an autologous heterogeneous skin construct used to close full-thickness wounds.

机构信息

Department of Research and Development, PolarityTE MD, Inc., Salt Lake City, UT, USA.

Department of Plastic Surgery, University of South Florida, Tampa, FL, USA.

出版信息

Tissue Cell. 2023 Aug;83:102126. doi: 10.1016/j.tice.2023.102126. Epub 2023 Jun 2.

DOI:10.1016/j.tice.2023.102126
PMID:37295271
Abstract

Acute and chronic wounds involving deeper layers of the skin are often not adequately healed by dressings alone and require therapies such as skin grafting, skin substitutes, or growth factors. Here we report the development of an autologous heterogeneous skin construct (AHSC) that aids wound closure. AHSC is manufactured from a piece of healthy full-thickness skin. The manufacturing process creates multicellular segments, which contain endogenous skin cell populations present within hair follicles. These segments are physically optimized for engraftment within the wound bed. The ability of AHSC to facilitate closure of full thickness wounds of the skin was evaluated in a swine model and clinically in 4 patients with wounds of different etiologies. Transcriptional analysis demonstrated high concordance of gene expression between AHSC and native tissues for extracellular matrix and stem cell gene expression panels. Swine wounds demonstrated complete wound epithelialization and mature stable skin by 4 months, with hair follicle development in AHSC-treated wounds evident by 15 weeks. Biomechanical, histomorphological, and compositional analysis of the resultant swine and human skin wound biopsies demonstrated the presence of epidermal and dermal architecture with follicular and glandular structures that are similar to native skin. These data suggest that treatment with AHSC can facilitate wound closure.

摘要

涉及皮肤深层的急性和慢性伤口通常仅用敷料无法充分愈合,需要进行皮肤移植、皮肤替代物或生长因子等治疗。在这里,我们报告了一种有助于伤口闭合的自体异种皮肤构建体 (AHSC) 的开发。AHSC 由一块健康的全厚皮肤制成。制造过程会产生多细胞段,其中包含存在于毛囊内的内源性皮肤细胞群。这些片段在物理上优化用于植入伤口床。在猪模型中评估了 AHSC 促进全厚皮肤伤口闭合的能力,并在 4 名患有不同病因的伤口的患者中进行了临床评估。转录分析表明,AHSC 与天然组织在外基质和干细胞基因表达谱上的基因表达具有高度一致性。猪伤口在 4 个月时表现出完全的上皮化和成熟稳定的皮肤,在 AHSC 治疗的伤口中可见到毛囊发育,这一现象在 15 周时就已经出现。对猪和人皮肤伤口活检的生物力学、组织形态学和成分分析表明,存在与天然皮肤相似的表皮和真皮结构,以及毛囊和腺体结构。这些数据表明,AHSC 治疗可以促进伤口闭合。

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