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Implantation of a heterologous dermo-epidermal skin substitute in a patient with deep dermal burn that enhances biomechanical and functional recovery: Case report

机译:在深部皮肤烧伤患者中植入异源真皮表皮皮肤替代品,可增强生物力学和功能恢复:病例报告

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In Mexico, burns are considered a public health problem; approximately 93% of all burned patients are treated at public hospitals. For patients undergoing extensive burns, prompt skin coverage avoids potential complications, is life-saving, and is the key for acceptable functional and aesthetic results. Many efforts have been undertaken to find new strategies for the treatment of burns. The aim of this study was to create a human Dermo-Epidermal Skin Substitute (hDE-SS) by combining heterologous keratinocytes and fibroblasts cultured onto Radio-sterilized Human Amnion (RHA), suitable for the treatment of patients with deep dermal burns. The manufacture of hDE-SS was carried out under sterile conditions in a Class 100 Cleanroom located inside the Laboratory of Biotechnology at the National Center of Research and Attention for Burn Patients (CENIAQ, its acronym in spanish). The heterologous cells were obtained from skin remnants collected from elective aesthetic surgeries. RHA used as a scaffold was obtained from placental tissue irradiated with 25?kGy of gamma radiation. Viable constructs were obtained, revealing a positive immunophenotype for fibroblast surface antigen (1B10) and negative for human alpha smooth muscle actin protein (α-sma). Keratinocytes were positive for CK5 and CK10 to a lesser extent. hDE-SS was implanted in one patient with a deep dermal burn who fulfilled the inclusion criteria for this study. The implanted patient was followed up through days 7, 14, 21, 35, and 92 post-implantation using photographic monitoring and measurement of the following: viscoelasticity (R6); net elasticity (R5); maximal extension (R0), and hydration, melanin, and erythema with a Cutometer?. The employment of hDE-SS in a deep dermal burn showed clinical re-epithelization within a 7-day period favored by cellular migration, due to the presence of fibroblasts and keratinocytes. Also, the functional and mechanical quality of the skin was measured with the Cutometer?, demonstrating that it is optimal and similar to controls of healthy skin and an autograft, justifying the usage of hDE-SS.
机译:在墨西哥,烧伤被认为是公共卫生问题。所有烧伤患者中约有93%在公立医院接受治疗。对于遭受严重烧伤的患者,及时的皮肤覆盖可以避免潜在的并发症,可以挽救生命,并且是获得可接受的功能和美学效果的关键。已经进行了许多努力来寻找治疗烧伤的新策略。这项研究的目的是通过结合异源角质形成细胞和培养在放射灭菌人羊膜(RHA)上的成纤维细胞来创建人皮肤表皮皮肤替代品(hDE-SS),适用于治疗深层皮肤烧伤患者。 hDE-SS的生产是在无菌条件下,在位于国家烧伤患者研究和关注中心生物技术实验室内的100级无尘室中进行的(CENIAQ,其缩写为西班牙语)。异源细胞得自选择性美容手术收集的皮肤残余物。用作支架的RHA是从经25?kGyγ射线照射的胎盘组织获得的。获得了可行的构建体,揭示了成纤维细胞表面抗原(1B10)的阳性免疫表型和人α平滑肌肌动蛋白(α-sma)的阴性。角质形成细胞CK5和CK10阳性的程度较小。将hDE-SS植入一位符合本研究纳入标准的深部皮肤烧伤患者中。在植入后的第7、14、21、35和92天对植入的患者进行随访,并使用以下方法进行照相监控和测量:粘弹性(R6);净弹性(R5);最大伸长率(R0),以及使用Cutometer进行的水合作用,黑色素和红斑?由于成纤维细胞和角质形成细胞的存在,在深层皮肤烧伤中使用hDE-SS表现出在7天内临床上皮再生,受到细胞迁移的促进。另外,使用Cutometer?测量了皮肤的功能和机械质量,证明它是最佳的,并且与健康皮肤和自体移植物的对照相似,证明了hDE-SS的合理使用。

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