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Rapid creation of skin substitutes from human skin cells and biomimetic nanofibers for acute full-thickness wound repair

机译:由人类皮肤细胞和仿生纳米纤维快速创建皮肤替代品,用于急性全层伤口修复

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Creation of functional skin substitutes within a clinically acceptable time window is essential for timely repair and management of large wounds such as extensive burns. The aim of this study was to investigate the possibility of fabricating skin substitutes via a bottom-up nanofiber-enabled cell assembly approach and using such substitutes for full-thickness wound repair in nude mice. Following a layer-by-layer (L-b-L) manner, human primary skin cells (fibroblasts and keratinocytes) were rapidly assembled together with electrospun polycaprolactone (PCL)/collagen (3:1, w/w; 8%, w/v) nanofibers into 3D constructs, in which fibroblasts and keratinocytes were located in the bottom and upper portion respectively. Following culture, the constructs developed into a skin-like structure with expression of basal keratinocyte markers and deposition of new matrix while exhibiting good mechanical strength (as high as 4.0 MPa by 14 days). Treatment of the full-thickness wounds created on the back of nude mice with various grafts (acellular nanofiber meshes, dermal substitutes, skin substitutes and autografts) revealed that 14-day-cultured skin substitutes facilitated a rapid wound closure with complete epithelialization comparable to autografts. Taken together, skin-like substitutes can be formed by L-b-L assembling human skin cells and biomimetic nanofibers and they are effective to heal acute full-thickness wounds in nude mice. (C) 2015 Elsevier Ltd and ISBI. All rights reserved.
机译:在临床上可接受的时间范围内创建功能性皮肤替代品对于及时修复和处理大面积伤口(例如大面积烧伤)至关重要。这项研究的目的是研究通过自下而上的启用纳米纤维的细胞组装方法制造皮肤替代品并将这种替代品用于裸鼠全厚度伤口修复的可能性。遵循层层(LbL)方式,人类原代皮肤细胞(成纤维细胞和角质形成细胞)与电纺聚己内酯(PCL)/胶原蛋白(3:1,w / w; 8%,w / v)纳米纤维迅速组装在一起成3D构造,其中成纤维细胞和角质形成细胞分别位于底部和上部。培养后,该构建体发展成具有基底角质形成细胞标志物的表达和新基质沉积的皮肤样结构,同时表现出良好的机械强度(到14天时高达4.0 MPa)。用各种移植物(无细胞纳米纤维网,皮肤替代物,皮肤替代物和自体移植物)治疗裸鼠背部形成的全层伤口,结果表明,培养14天的皮肤替代物可促进伤口快速闭合,完全可上皮化,相当于自体移植物。综上所述,可以通过L-b-L组装人类皮肤细胞和仿生纳米纤维形成类似皮肤的替代物,它们可以有效治愈裸鼠的急性全层伤口。 (C)2015 Elsevier Ltd和ISBI。版权所有。

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