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首页> 外文期刊>Drug delivery and translational research >Safety and efficacy of dermal fibroblast conditioned medium (DFCM) fortified collagen hydrogel as acellular 3D skin patch
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Safety and efficacy of dermal fibroblast conditioned medium (DFCM) fortified collagen hydrogel as acellular 3D skin patch

机译:皮肤成纤维细胞条件培养基(DFCM)强化胶原水凝胶的安全性和有效性,作为无细胞3D皮肤贴片

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摘要

Skin substitutes are one of the main treatments for skin loss, and a skin substitute that is readily available would be the best treatment option. However, most cell-based skin substitutes require long production times, and therefore, patients endure long waiting times. The proteins secreted from the cells and tissues play vital roles in promoting wound healing. Thus, we aimed to develop an acellular three-dimensional (3D) skin patch with dermal fibroblast conditioned medium (DFCM) and collagen hydrogel for immediate treatment of skin loss. Fibroblasts from human skin samples were cultured using serum-free keratinocyte-specific media (KM1 or KM2) and serum-free fibroblast-specific medium (FM) to obtain DFCM-KM1, DFCM-KM2, and DFCM-FM, respectively. The acellular 3D skin patch was soft, semi-solid, and translucent. Collagen mixed with DFCM-KM1 and DFCM-KM2 showed higher protein release compared to collagen plus DFCM-FM. In vitro and in vivo testing revealed that DFCM and collagen hydrogel did not induce an immune response. The implantation of the 3D skin patch with or without DFCM on the dorsum of BALB/c mice demonstrated a significantly faster healing rate compared to the no-treatment group 7days after implantation, and all groups had complete re-epithelialization at day 17. Histological analysis confirmed the structure and integrity of the regenerated skin, with positive expression of cytokeratin 14 and type I collagen in the epidermal and dermal layer, respectively. These findings highlight the possibility of using fibroblast secretory factors together with collagen hydrogel in an acellular 3D skin patch that can be used allogeneically for immediate treatment of full-thickness skin loss.
机译:皮肤替代品是皮肤损失的主要处理之一,易于获得的皮肤替代品是最佳的治疗方式。然而,大多数基于细胞的皮肤替代品需要长期生产时间,因此,患者忍受等待时间。从细胞和组织中分泌的蛋白质起到促进伤口愈合的重要作用。因此,我们旨在开发一种具有皮肤成纤维细胞调节培养基(DFCM)和胶原水凝胶的无细胞三维(3D)皮肤贴片,用于立即治疗皮肤损失。使用无血清特异性细胞特异性培养基(KM1或KM2)和无血清成纤维细胞特异性培养基(FM)培养人皮肤样品的成纤维细胞分别获得DFCM-KM1,DFCM-KM2和DFCM-FM。无细胞3D皮肤贴片柔软,半固体和半透明。与DFCM-KM1和DFCM-KM2混合的胶原蛋白显示出更高的蛋白质释放,与胶原蛋白加上DFCM-FM相比。体外和体内检测显示DFCM和胶原水凝胶没有诱导免疫应答。与植入后的无治疗组7天相比,3D皮肤贴片的3D皮肤贴片有或没有DFCM的植入术语明显更快的愈合速率,并且所有基团在第17天完成重新上皮化。组织学分析确认了再生皮肤的结构和完整性,分别具有细胞角蛋白14的阳性表达和表皮层中的I型胶原蛋白。这些发现强调了使用成纤维细胞分泌物因子与胶原蛋白水凝胶在无细胞3D皮肤贴片中的可能性,该蛋白可以同一性地用于立即治疗全厚的皮肤损失。

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