A Prospective, Randomized, Controlled Study to Evaluate the Effectiveness of a Fabric-Based Wireless Electroceutical Dressing Compared to Standard-of-Care Treatment Against Acute Trauma and Burn Wound Biofilm Infection.

IF 5.8 3区 医学 Q1 DERMATOLOGY Advances in wound care Pub Date : 2024-01-01 Epub Date: 2023-04-11 DOI:10.1089/wound.2023.0007
Rodney K Chan, Kristo Nuutila, Shomita S Mathew-Steiner, Victoria Diaz, Kristin Anselmo, Maria Batchinsky, Anders Carlsson, Nandini Ghosh, Chandan K Sen, Sashwati Roy
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Abstract

Objective: Despite advances in the use of topical and parenteral antimicrobial therapy and the practice of early tangential burn wound excision to manage bacterial load, 60% of the mortality from burns is attributed to bacterial biofilm infection. A low electric field (∼1 V) generated by the novel FDA-cleared wireless electroceutical dressing (WED) was previously shown to significantly prevent and disrupt burn biofilm infection in preclinical studies. Based on this observation, the purpose of this clinical trial was to evaluate the efficacy of the WED dressing powered by a silver-zinc electrocouple in the prevention and disruption of biofilm infection. Approach: A prospective, randomized, controlled, single-center clinical trial was performed to evaluate the efficacy of the WED compared with standard-of-care (SoC) dressing to treat biofilms. Burn wounds were randomized to receive either SoC or WED. Biopsies were collected on days 0 and 7 for histology, scanning electron microscopy (SEM) examination of biofilm, and for quantitative bacteriological analyses. Results: In total, 38 subjects were enrolled in the study. In 52% of the WED-treated wounds, little to no biofilm could be detected by SEM. WED significantly lowered or prevented increase of biofilm in all wounds compared with the pair-matched SoC-treated wounds. Innovation: WED is a simple, easy, and rapid method to protect the wound while also inhibiting infection. It is activated by a moist environment and the electrical field induces transient and micromolar amounts of superoxide anion radicals that will prevent bacterial growth. Conclusion: WED decreased biofilm infection better compared with SoC. The study was registered in clinicaltrials.gov as NCT04079998.

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一项前瞻性、随机、对照研究,旨在评估基于织物的无线电治疗敷料与标准护理治疗对急性创伤和烧伤伤口生物膜感染的有效性。
目的:尽管在使用局部和胃肠外抗菌治疗以及早期切向烧伤伤口切除术来控制细菌负荷方面取得了进展,但60%的烧伤死亡率归因于细菌生物膜感染。低电场(~1 V) 先前在临床前研究中显示,由新型FDA批准的无线电治疗敷料(WED)产生的药物可显著预防和破坏烧伤生物膜感染。基于这一观察结果,本临床试验的目的是评估由银锌电偶供电的WED敷料在预防和破坏生物膜感染方面的疗效。方法:进行了一项前瞻性、随机、对照、单中心临床试验,以评估WED与标准护理(SoC)敷料治疗生物膜的疗效。烧伤伤口随机接受SoC或WED治疗。在第0天和第7天采集活检,用于组织学、生物膜的扫描电子显微镜(SEM)检查和定量细菌学分析。结果:共有38名受试者参与了这项研究。在52%的WED处理的伤口中,SEM几乎没有检测到生物膜。与配对的SoC处理的伤口相比,WED显著降低或阻止了所有伤口中生物膜的增加。创新:WED是一种简单、简单、快速的方法,既能保护伤口,又能抑制感染。它被潮湿的环境激活,电场会诱导瞬时和微摩尔量的超氧阴离子自由基,从而阻止细菌生长。结论:与SoC相比,WED能更好地降低生物膜感染。该研究在clinicaltrials.gov上注册为NCT04079998。
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来源期刊
Advances in wound care
Advances in wound care Medicine-Emergency Medicine
CiteScore
12.10
自引率
4.10%
发文量
62
期刊介绍: Advances in Wound Care rapidly shares research from bench to bedside, with wound care applications for burns, major trauma, blast injuries, surgery, and diabetic ulcers. The Journal provides a critical, peer-reviewed forum for the field of tissue injury and repair, with an emphasis on acute and chronic wounds. Advances in Wound Care explores novel research approaches and practices to deliver the latest scientific discoveries and developments. Advances in Wound Care coverage includes: Skin bioengineering, Skin and tissue regeneration, Acute, chronic, and complex wounds, Dressings, Anti-scar strategies, Inflammation, Burns and healing, Biofilm, Oxygen and angiogenesis, Critical limb ischemia, Military wound care, New devices and technologies.
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