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首页> 外文期刊>Molecular medicine reports >A novel dermal matrix generated from burned skin as a promising substitute for deep-degree burns therapy
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A novel dermal matrix generated from burned skin as a promising substitute for deep-degree burns therapy

机译:从烧伤的皮肤产生的新型真皮基质,可作为深层烧伤治疗的有希望的替代品

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摘要

The extensive skin defects induced by severe burns are dangerous and can be fatal. Currently, the most common therapy is tangential excision to remove the necrotic or denatured areas of skin, followed by skin grafting. Xenogeneic dermal substitutes, such as porcine acellular dermal matrix (ADM), are typically used to cover the burn wounds, and may accelerate wound healing. It is assumed that burned skin that still maintains partial biological activity may be recycled to construct an autologous acellular dermal matrix, termed 'deep-degree burned dermal matrix (DDBDM)'. In theory, DDBDM may avoid the histoincompatibility issues associated with foreign or xenogeneic dermal matrices, and reduce therapy costs by making full use of discarded skin. In the present study, the collagens within prepared DDBDM were thickened, disorganized and partially fractured, however, they still maintained their reticular structure and tensile strength (P<0.01). Through microarray analysis of the cytokines present in ADM and DDBDM, it was determined that the DDBDM did not produce excessive levels of harmful burn toxins. Following 4 weeks of subcutaneous implantation, ADM and DDBDM were incompletely degraded and maintained good integrity. No significant inflammatory reaction or rejection were observed, which indicated that ADM and DDBDM have good histocompatibility. Therefore, DDBDM may be a useful material for the treatment of deep-degree burns.
机译:严重灼伤引起的广泛皮肤缺陷很危险,甚至可能致命。当前,最常见的疗法是切线切除以去除皮肤的坏死或变性区域,然后进行植皮。异种真皮替代物,例如猪脱细胞真皮基质(ADM),通常用于覆盖烧伤创面,并可能加速创面愈合。假设可以将仍保留部分生物活性的烧伤皮肤进行再循环,以构建自体的无细胞真皮基质,称为“深度烧伤真皮基质(DDBDM)”。从理论上讲,DDBDM可以避免与外来或异种真皮基质相关的组织相容性问题,并通过充分利用废弃的皮肤来降低治疗成本。在本研究中,制备的DDBDM中的胶原蛋白增稠,分解和部分断裂,但是它们仍保持其网状结构和拉伸强度(P <0.01)。通过对ADM和DDBDM中存在的细胞因子进行微阵列分析,可以确定DDBDM不会产生过量的有害烧伤毒素。皮下植入4周后,ADM和DDBDM未完全降解并保持良好的完整性。没有观察到明显的炎症反应或排斥反应,这表明ADM和DDBDM具有良好的组织相容性。因此,DDBDM可能是治疗深度烧伤的有用材料。

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