液体真皮支架内脂肪微碎片治疗全层创面的评价

IF 1 Q4 CRITICAL CARE MEDICINE European burn journal Pub Date : 2022-09-17 DOI:10.3390/ebj3030040
Sara Sheikh-Oleslami, I. Hassanpour, N. Amiri, R. Jalili, R. Kilani, A. Ghahary
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摘要

在全层伤口中,炎症、基质沉积的缺乏和祖细胞的缺乏会延迟愈合。由于市面上可用的固体(片状)支架无法适应不同形状和大小的伤口,我们之前制作了一种营养丰富、可注射的液体皮肤替代品,可以适应伤口的地形。结合脂肪微碎片作为可行的祖细胞来源,我们测试了一种复合的原位形成皮肤替代物用于大鼠硅环夹板全层伤口的治疗。我们的支架中培养的来自大鼠微碎片脂肪的脂肪细胞的体外生存能力和迁移能力通过活/死实验进行了检测,显示了7天和14天后的生存能力和迁移能力。在体内,我们的支架单独(LDS)或与脂肪微碎片(LDS+A)的效果与标准敷料方案(NT)进行了比较。与NT对照组相比,LDS和LDS+A组伤口愈合改善,包括完全上皮化和较少的免疫细胞浸润。我们的研究结果表明,3D液体皮肤支架是脂肪细胞活力和迁移的丰富环境,并且在支架中添加脂肪微碎片可以作为治疗全层伤口的丰富细胞来源。
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An Evaluation of the Treatment of Full-Thickness Wounds Using Adipose Micro-Fragments within a Liquid Dermal Scaffold
In full-thickness wounds, inflammation, lack of matrix deposition, and paucity of progenitor cells delay healing. As commercially available solid (sheet) scaffolds are unable to conform to wounds of varying shapes and sizes, we previously generated a nutritious, injectable, liquid skin substitute that can conform to wound topography. In combination with adipose micro-fragments as a viable source of progenitor cells, a composite, in situ forming skin substitute was tested for the treatment of silicon ring splinted full-thickness wounds in rats. The in vitro survivability and migratory capacity of adipocytes derived from rat micro-fragmented fat cultured in our scaffold was examined with a Live/Dead assay, showing viability and migration after 7 and 14 days. In vivo, the efficacy of our scaffold alone (LDS) or with adipose micro-fragments (LDS+A) was compared to a standard dressing protocol (NT). LDS and LDS+A showed ameliorated wound healing, including complete epithelialization and less immune cell infiltration, compared to the NT control. Our findings demonstrate that a 3D liquid skin scaffold is a rich environment for adipocyte viability and migration, and that the addition of adipose micro-fragments to this scaffold can be used as a rich source of cells for treating full-thickness wounds.
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