Kuna Vijay K, Padma Arvind M, Håkansson Joakim, Nygren Jan, Sjöback Robert, Petronis Sarunas, Sumitran-Holgersson Suchitra
Cell Transplant. 2017 Feb 16;26(2):293-307. doi: 10.3727/096368916X692690. Epub 2016 Aug 5.
Here we report the fabrication of a novel composite gel from decellularized gal-gal-knockout porcine skin and human peripheral blood mononuclear cells (hPBMCs) for full-thickness skin wound healing. Decellularized skin extracellular matrix (ECM) powder was prepared via chemical treatment, freeze drying, and homogenization. The powder was mixed with culture medium containing hyaluronic acid to generate a pig skin gel (PSG). The effect of the gel in regeneration of full-thickness wounds was studied in nude mice. We found significantly accelerated wound closure already on day 15 in animals treated with PSG only or PSG + hPBMCs compared to untreated and hyaluronic acid-treated controls (p < 0.05). Addition of the hPBMCs to the gel resulted in marked increase of host blood vessels as well as the presence of human blood vessels. At day 25, histologically, the wounds in animals treated with PSG only or PSG + hPBMCs were completely closed compared to those of controls. Thus, the gel facilitated generation of new skin with well-arranged epidermal cells and restored bilayer structure of the epidermis and dermis. These results suggest that porcine skin ECM gel together with human cells may be a novel and promising biomaterial for medical applications especially for patients with acute and chronic skin wounds.
在此,我们报告了一种新型复合凝胶的制备,该凝胶由脱细胞的半乳糖 - 半乳糖敲除猪皮和人外周血单核细胞(hPBMCs)制成,用于全层皮肤伤口愈合。通过化学处理、冷冻干燥和匀浆制备脱细胞皮肤细胞外基质(ECM)粉末。将该粉末与含有透明质酸的培养基混合以生成猪皮凝胶(PSG)。在裸鼠中研究了该凝胶对全层伤口再生的作用。我们发现,与未处理和透明质酸处理的对照组相比,仅用PSG或PSG + hPBMCs处理的动物在第15天伤口闭合明显加速(p < 0.05)。向凝胶中添加hPBMCs导致宿主血管显著增加以及人血管的出现。在第25天,组织学检查显示,与对照组相比,仅用PSG或PSG + hPBMCs处理的动物伤口完全闭合。因此,该凝胶促进了具有排列良好的表皮细胞的新皮肤生成,并恢复了表皮和真皮的双层结构。这些结果表明,猪皮ECM凝胶与人细胞一起可能是一种新型且有前景的生物材料,尤其适用于急性和慢性皮肤伤口患者的医学应用。