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个性化烧伤治疗:床边电纺纳米纤维支架与培养的自体角质形成细胞:案例研究。

Personalised burn treatment: bedside electrospun nanofibre scaffold with cultured autologous keratinocytes: a case study.

机构信息

The Green Skin Engineering Center, National Burn Center, Sheba Medical Center, Tel Hashomer, Israel.

National Burn Center, Sheba Medical Center, Tel Hashomer, Israel.

出版信息

J Wound Care. 2023 Jul 2;32(7):428-436. doi: 10.12968/jowc.2023.32.7.428.

DOI:10.12968/jowc.2023.32.7.428
PMID:37405944
Abstract

Nearly four decades after cultured epidermal autografts (CEA) were first used for the treatment of extensive burn wounds, the current gold standard treatment remains grafting healthy autologous skin from a donor site to the damaged areas, with current skin substitutes limited in their clinical use. We propose a novel treatment approach, using an electrospun polymer nanofibrous matrix (EPNM) applied on-site directly on the CEA-grafted areas. In addition, we propose a personalised treatment on hard-to-heal areas, in which we spray suspended autologous keratinocytes integrated with 3D EPNM applied on-site, directly onto the wound bed. This method enables the coverage of larger wound areas than possible with CEA. We present the case of a 26-year-old male patient with full-thickness burns covering 98% of his total body surface area (TBSA). We were able to show that this treatment approach resulted in good re-epithelialisation, seen as early as seven days post CEA grafting, with complete wound closure within three weeks, and to a lesser extent in areas treated with cell spraying. Moreover, in vitro experiments confirmed the feasibility of using keratinocytes embedded within the EPNM: cell and culture viability, identity, purity and potency were determined. These experiments show that the skin cells are viable and can proliferate within the EPNM. The results presented are of a promising novel strategy for the development of personalised wound treatment, integrating on-the-spot 'printed' EPNM with autologous skin cells, which will be applied at the bedside, over deep dermal wounds, to accelerate healing time and wound closure.

摘要

在培养的表皮移植物(CEA)首次用于治疗大面积烧伤近四十年后,目前的金标准治疗仍然是将来自供体部位的健康自体皮肤移植到受损区域,而目前的皮肤替代品在临床应用中受到限制。我们提出了一种新的治疗方法,即在移植的 CEA 区域上直接应用电纺聚合物纳米纤维基质(EPNM)。此外,我们还提出了一种针对难以愈合区域的个性化治疗方法,其中我们将悬浮的自体角质形成细胞与 3D EPNM 集成后喷涂,并直接喷到创面床上。这种方法可以覆盖比 CEA 更大的创面。我们报告了一名 26 岁男性患者的病例,他的全厚烧伤面积覆盖了他的总体表面积(TBSA)的 98%。我们能够表明,这种治疗方法导致了良好的再上皮化,早在 CEA 移植后七天就可以看到,三周内完全闭合伤口,在使用细胞喷涂治疗的区域则在较小程度上看到。此外,体外实验证实了将角质形成细胞嵌入 EPNM 中的可行性:细胞和培养物的活力、身份、纯度和效力都得到了确定。这些实验表明,皮肤细胞在 EPNM 内是有活力的,可以增殖。所呈现的结果是一种有前途的个性化伤口治疗新策略的发展,该策略将现场“打印”的 EPNM 与自体皮肤细胞整合在一起,将应用于床边,覆盖深层真皮伤口,以加速愈合时间和伤口闭合。

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