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本文引用的文献

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A multimodel regime for evaluating effectiveness of antimicrobial wound care products in microbial biofilms.多模型方法评估抗菌伤口护理产品在微生物生物膜中的效果。
Wound Repair Regen. 2020 Jul;28(4):438-447. doi: 10.1111/wrr.12806. Epub 2020 Mar 28.
2
Hydrogen Peroxide-Generating Electrochemical Scaffold Activity against Trispecies Biofilms.过氧化氢生成电化学支架对三物种生物膜的活性。
Antimicrob Agents Chemother. 2020 Mar 24;64(4). doi: 10.1128/AAC.02332-19.
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Hypochlorous-Acid-Generating Electrochemical Scaffold for Treatment of Wound Biofilms.次氯酸生成电化学支架治疗伤口生物膜。
Sci Rep. 2019 Feb 25;9(1):2683. doi: 10.1038/s41598-019-38968-y.
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Hydrogen Peroxide: A Potential Wound Therapeutic Target?过氧化氢:一种有潜力的创伤治疗靶点?
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Chronic Wound Healing: A Review of Current Management and Treatments.慢性伤口愈合:当前管理与治疗综述
Adv Ther. 2017 Mar;34(3):599-610. doi: 10.1007/s12325-017-0478-y. Epub 2017 Jan 21.
6
Biofilm delays wound healing: A review of the evidence.生物膜延迟伤口愈合:证据回顾。
Burns Trauma. 2013 Jun 18;1(1):5-12. doi: 10.4103/2321-3868.113329. eCollection 2013.
7
Electrochemical scaffold generates localized, low concentration of hydrogen peroxide that inhibits bacterial pathogens and biofilms.电化学支架产生局部低浓度的过氧化氢,可抑制细菌病原体和生物膜。
Sci Rep. 2015 Oct 14;5:14908. doi: 10.1038/srep14908.
8
Biofilms and Inflammation in Chronic Wounds.慢性伤口中的生物膜与炎症
Adv Wound Care (New Rochelle). 2013 Sep;2(7):389-399. doi: 10.1089/wound.2012.0381.
9
Active starvation responses mediate antibiotic tolerance in biofilms and nutrient-limited bacteria.主动饥饿反应介导生物膜和营养限制细菌中的抗生素耐药性。
Science. 2011 Nov 18;334(6058):982-6. doi: 10.1126/science.1211037.
10
Survey of fungi and yeast in polymicrobial infections in chronic wounds.慢性伤口多重微生物感染中的真菌和酵母菌调查
J Wound Care. 2011 Jan;20(1):40-7. doi: 10.12968/jowc.2011.20.1.40.

一种由可穿戴式电位计控制的产双氧水电化学绷带,用于治疗伤口感染。

Hydrogen peroxide-producing electrochemical bandage controlled by a wearable potentiostat for treatment of wound infections.

机构信息

The Gene and Linda Voiland School of Chemical Engineering and Bioengineering, Pullman, Washington, USA.

Division of Clinical Microbiology, Mayo Clinic, Rochester, Minnesota, USA.

出版信息

Biotechnol Bioeng. 2021 Jul;118(7):2815-2821. doi: 10.1002/bit.27794. Epub 2021 May 3.

DOI:10.1002/bit.27794
PMID:33856049
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8653773/
Abstract

Chronic wound infections caused by biofilm-forming microorganisms represent a major burden to healthcare systems. Treatment of chronic wound infections using conventional antibiotics is often ineffective due to the presence of bacteria with acquired antibiotic resistance and biofilm-associated antibiotic tolerance. We previously developed an electrochemical scaffold that generates hydrogen peroxide (H O ) at low concentrations in the vicinity of biofilms. The goal of this study was to transition our electrochemical scaffold into an H O -generating electrochemical bandage (e-bandage) that can be used in vivo. The developed e-bandage uses a xanthan gum-based hydrogel to maintain electrolytic conductivity between e-bandage electrodes and biofilms. The e-bandage is controlled using a lightweight, battery-powered wearable potentiostat suitable for use in animal experiments. We show that e-bandage treatment reduced colony-forming units of Acinetobacter buamannii biofilms (treatment vs. control) in 12 h (7.32 ± 1.70 vs. 9.73 ± 0.09 log [CFU/cm ]) and 24 h (4.10 ± 12.64 vs. 9.78 ± 0.08 log [CFU/cm ]) treatments, with 48 h treatment reducing viable cells below the limit of detection of quantitative and broth cultures. The developed H O -generating e-bandage was effective against in vitro A. baumannii biofilms and should be further evaluated and developed as a potential alternative to topical antibiotic treatment of wound infections.

摘要

由生物膜形成微生物引起的慢性伤口感染对医疗保健系统构成了重大负担。由于具有获得性抗生素耐药性和生物膜相关抗生素耐受性的细菌的存在,使用常规抗生素治疗慢性伤口感染通常效果不佳。我们之前开发了一种电化学支架,可在生物膜附近产生低浓度的过氧化氢 (H 2 O 2 )。本研究的目的是将我们的电化学支架转化为可在体内使用的产生 H 2 O 2 的电化学绷带 (e-绷带)。开发的 e-绷带使用黄原胶基水凝胶在 e-绷带电极和生物膜之间保持电解质导电性。e-绷带使用重量轻、由电池供电的可穿戴式恒电位仪进行控制,适用于动物实验。我们表明,e-绷带治疗在 12 小时(7.32 ± 1.70 对 9.73 ± 0.09 log [CFU/cm 2 ])和 24 小时(4.10 ± 12.64 对 9.78 ± 0.08 log [CFU/cm 2 ])时减少了鲍曼不动杆菌生物膜的集落形成单位(治疗与对照),48 小时治疗使活细胞降低到定量和肉汤培养的检测限以下。开发的 H 2 O 2 产生 e-绷带对体外鲍曼不动杆菌生物膜有效,应进一步评估和开发,作为伤口感染局部抗生素治疗的潜在替代方法。