Center for Preventive Medicine, School of Health & Human Performance, Dublin City University, Dublin 9, Ireland.
Center for Preventive Medicine, School of Health & Human Performance, Dublin City University, Dublin 9, Ireland; Technological University Dublin, Ireland.
Burns. 2020 Nov;46(7):1585-1602. doi: 10.1016/j.burns.2020.04.036. Epub 2020 May 14.
Burn injuries are a major cause of morbidity and mortality worldwide. Despite advances in therapeutic strategies for the management of patients with severe burns, the sequelae are pathophysiologically profound, up to the systemic and metabolic levels. Management of patients with a severe burn injury is a long-term, complex process, with treatment dependent on the degree and location of the burn and total body surface area (TBSA) affected. In adverse conditions with limited resources, efficient triage, stabilisation, and rapid transfer to a specialised intensive care burn centre is necessary to provide optimal outcomes. This initial lag time and the form of primary treatment initiated, from injury to specialist care, is crucial for the burn patient. This study aims to investigate the efficacy of a novel visco-elastic burn dressing with a proprietary bio-stimulatory marine mineral complex (MXC) as a primary care treatment to initiate a healthy healing process prior to specialist care.
A new versatile emergency burn dressing saturated in a >90% translucent water-based, sterile, oil-free gel and carrying a unique bio-stimulatory marine mineral complex (MXC) was developed. This dressing was tested using LabSkin as a burn model platform. LabSkin a novel cellular 3D-dermal organotypic full thickness human skin equivalent, incorporating fully-differentiated dermal and epidermal components that functionally models skin. Cell and molecular analysis was carried out by in vitro Real-Time Cellular Analysis (RTCA), thermal analysis, and focused transcriptomic array profiling for quantitative gene expression analysis, interrogating both wound healing and fibrosis/scarring molecular pathways. In vivo analysis was also performed to assess the bio-mechanical and physiological effects of this novel dressing on human skin.
This hybrid emergency burn dressing (EBD) with MXC was hypoallergenic, and improved the barrier function of skin resulting in increased hydration up to 24 h. It was demonstrated to effectively initiate cooling upon application, limiting the continuous burn effect and preventing local tissue from damage and necrosis. xCELLigence RTCA® on primary human dermal cells (keratinocyte, fibroblast and micro-vascular endothelial) demonstrated improved cellular function with respect to tensegrity, migration, proliferation and cell-cell contact (barrier formation) [1]. Quantitative gene profiling supported the physiological and cellular function finding. A beneficial quid pro quo regulation of genes involved in wound healing and fibrosis formation was observed at 24 and 48 h time points.
Utilisation of this EBD + MXC as a primary treatment is an effective and easily applicable treatment in cases of burn injury, proving both a cooling and hydrating environment for the wound. It regulates inflammation and promotes healing in preparation for specialised secondary burn wound management. Moreover, it promotes a healthy remodelling phenotype that may potentially mitigate scarring. Based on our findings, this EBD + MXC is ideal for use in all pre-hospital, pre-surgical and resource limited settings.
烧伤是全球发病率和死亡率的主要原因。尽管在治疗严重烧伤患者的治疗策略方面取得了进展,但后遗症在病理生理学上是深刻的,甚至涉及全身和代谢水平。严重烧伤患者的管理是一个长期、复杂的过程,其治疗取决于烧伤的程度和位置以及受影响的全身表面积(TBSA)。在资源有限的不利条件下,需要进行有效的分诊、稳定化,并迅速转至专门的重症烧伤护理中心,以提供最佳结果。从受伤到专科护理的初始延迟时间和启动的初始治疗形式对烧伤患者至关重要。本研究旨在探讨一种新型粘弹性烧伤敷料的疗效,该敷料含有专有的生物刺激海洋矿物质复合物(MXC),作为专科护理前的初级治疗,以启动健康的愈合过程。
开发了一种新型多功能紧急烧伤敷料,该敷料浸透在> 90%透明的水基、无菌、无油凝胶中,并携带独特的生物刺激海洋矿物质复合物(MXC)。该敷料使用 LabSkin 作为烧伤模型平台进行了测试。LabSkin 是一种新型的细胞 3D 真皮器官型全厚度人体皮肤等效物,包含完全分化的真皮和表皮成分,可功能模拟皮肤。通过体外实时细胞分析(RTCA)、热分析和聚焦转录组阵列分析进行细胞和分子分析,定量基因表达分析,研究伤口愈合和纤维化/瘢痕形成分子途径。还进行了体内分析,以评估这种新型敷料对人体皮肤的生物力学和生理影响。
这种含有 MXC 的混合式紧急烧伤敷料(EBD)具有低变应原性,并改善了皮肤的屏障功能,使皮肤保持水分长达 24 小时。它被证明可以在应用时有效地启动冷却,限制持续烧伤的影响,并防止局部组织损伤和坏死。xCELLigence RTCA® 在原代人真皮细胞(角质形成细胞、成纤维细胞和微血管内皮细胞)上的实验表明,在张力完整性、迁移、增殖和细胞-细胞接触(屏障形成)方面改善了细胞功能[1]。定量基因分析支持生理和细胞功能发现。在 24 和 48 小时时间点观察到与伤口愈合和纤维化形成相关的基因的有益交换调节。
将这种 EBD + MXC 用作初级治疗是烧伤情况下的一种有效且易于应用的治疗方法,可为伤口提供冷却和保湿环境。它调节炎症并促进愈合,为专门的二级烧伤伤口管理做准备。此外,它还促进了健康的重塑表型,可能减轻瘢痕形成。基于我们的研究结果,这种 EBD + MXC 非常适合在所有院前、术前和资源有限的环境中使用。