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次氯酸生成电化学支架消除白色念珠菌生物膜。

Hypochlorous acid-generating electrochemical scaffold eliminates Candida albicans biofilms.

机构信息

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

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

出版信息

J Appl Microbiol. 2020 Oct;129(4):776-786. doi: 10.1111/jam.14656. Epub 2020 May 21.

Abstract

AIMS

Wound infections involving Candida albicans can be challenging to treat because of the fungus' ability to penetrate wound tissue and form biofilms. The goal of this study was to assess the activity of a hypochlorous acid (HOCl)-generating electrochemical scaffold (e-scaffold) against C. albicans biofilms in vitro and on porcine dermal explants (ex vivo).

METHODS AND RESULTS

C. albicans biofilms were grown either on acrylic-bottom six-well plates (in vitro) or on skin tissue excised from porcine ears (ex vivo), and the polarized e-scaffold was used to generate a continuous supply of low concentration HOCl near biofilm surfaces. C. albicans biofilms grown in vitro were reduced to undetectable amounts within 24 h of e-scaffold exposure, unlike control biofilms (5·28 ± 0·034 log  (CFU cm ); P < 0·0001). C. albicans biofilms grown on porcine dermal explants were also reduced to undetectable amounts in 24 h, unlike control explant biofilms (4·29 ± 0·057 log (CFU cm ); P < 0·0001). There was a decrease in the number of viable mammalian cells (35·6 ± 6·4%) in uninfected porcine dermal explants exposed to continuous HOCl-generating e-scaffolds for 24 h compared to explants exposed to nonpolarized e-scaffolds (not generating HOCl) (P < 0·05).

CONCLUSIONS

Our HOCl-generating e-scaffold is a potential antifungal-free strategy to treat C. albicans biofilms in chronic wounds.

SIGNIFICANCE AND IMPACT OF THE STUDY

Wound infections caused by C. albicans are difficult to treat due to presence of biofilms in wound beds. Our HOCl producing e-scaffold provides a promising novel approach to treat wound infections caused by C. albicans.

摘要

目的

由于真菌能够穿透伤口组织并形成生物膜,因此涉及白色念珠菌的伤口感染可能难以治疗。本研究的目的是评估次氯酸(HOCl)生成电化学支架(e-支架)对体外和猪皮外植体(离体)中白色念珠菌生物膜的活性。

方法和结果

在丙烯酸底六孔板(体外)或从猪耳切除的皮肤组织(离体)上培养白色念珠菌生物膜,并使用极化的 e-支架在生物膜表面附近生成连续供应低浓度的 HOCl。与对照生物膜(5·28±0·034 log(CFU cm )相比,暴露于 e-支架 24 小时内,体外培养的白色念珠菌生物膜减少至无法检测到的水平(P<0·0001)。与对照外植体生物膜(4·29±0·057 log(CFU cm )相比,在 24 小时内,在猪皮外植体上生长的白色念珠菌生物膜也减少至无法检测到的水平(P<0·0001)。与暴露于非极化 e-支架(不产生 HOCl)的外植体相比,暴露于连续产生 HOCl 的 e-支架 24 小时的未感染猪皮外植体中的存活哺乳动物细胞数量减少(35·6±6·4%)(P<0·05)。

结论

我们的 HOCl 生成 e-支架是一种治疗慢性伤口中白色念珠菌生物膜的潜在无抗真菌策略。

研究的意义和影响

由白色念珠菌引起的伤口感染由于伤口床中存在生物膜而难以治疗。我们的产生 HOCl 的 e-支架为治疗由白色念珠菌引起的伤口感染提供了一种有前途的新方法。

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