首页> 美国卫生研究院文献>Advances in Wound Care >A Bilayer Engineered Skin Substitute for Wound Repair in an Irradiation-Impeded Healing Model on Rat
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A Bilayer Engineered Skin Substitute for Wound Repair in an Irradiation-Impeded Healing Model on Rat

机译:一种双层工程皮肤替代品用于在大鼠的辐照式愈合模型中进行伤口修复。

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>Objective: An engineered skin substitute is produced to accelerate wound healing by increasing the mechanical strength of the skin wound via high production of collagen bundles. During the remodeling stage of wound healing, collagen deposition is the most important event. The collagen deposition process may be altered by nutritional deficiency, diabetes mellitus, microbial infection, or radiation exposure, leading to impaired healing. This study describes the fabrication of an engineered bilayer skin substitute and evaluates its effectiveness for the production of collagen bundles in an impaired healing model.>Approach: Rats were exposed to 10 Gy of radiation. Two months postirradiation, the wounds were excised and treated with one of three skin replacement products: bilayer engineered skin substitutes, chitosan skin templates, or duoderm©. The collagen deposition was analyzed by hematoxylin and eosin staining.>Results: On day 21 postwound, the irradiated wounds displayed increased collagen bundle deposition after treatment using bilayer engineered skin substitutes (3.4±0.25) and chitosan skin templates (3.2±0.58) compared with duoderm (2.0±0.63).>Innovation: We provide the first report on the fabrication of bilayer engineered skin substitutes using high density human dermal fibroblasts cocultured with HFSCs on chitosan skin templates.>Conclusion: The high density of fibroblasts significantly increases the penetration of cells into chitosan skin templates, contributing to the fabrication of bilayer engineered skin substitute.
机译:>目的:经过工程改造的皮肤替代品可通过大量生产胶原蛋白束来增强伤口的机械强度,从而加速伤口愈合。在伤口愈合的重塑阶段,胶原蛋白沉积是最重要的事件。营养不足,糖尿病,微生物感染或辐射暴露可能会改变胶原蛋白沉积的过程,从而导致愈合受损。这项研究描述了一种工程化的双层皮肤替代品的制造过程,并评估了其在受损的愈合模型中对胶原蛋白束产生的有效性。>方法:大鼠暴露于10 Gy的辐射下。照射后两个月,切开伤口并用三种皮肤替代产品之一处理:双层工程皮肤替代品,壳聚糖皮肤模板或duoderm ©。通过苏木精和曙红染色分析胶原沉积。>结果:在伤口21天后,使用双层工程皮肤替代品(3.4±0.25)和壳聚糖皮肤模板治疗后,辐照的伤口显示胶原束沉积增加。与十二指肠(2.0±0.63)相比为3.2±0.58)。>创新:我们提供了第一份有关在壳聚糖皮肤模板上与HFSCs共培养的高密度人类真皮成纤维细胞制造双层工程皮肤替代品的报告。 strong>结论:高密度的成纤维细胞显着增加了细胞向壳聚糖皮肤模板中的渗透,从而促进了双层工程皮肤替代品的制造。

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