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提高杀生剂功效:以细胞外DNA为靶点破坏海洋生物膜

Enhancing Biocide Efficacy: Targeting Extracellular DNA for Marine Biofilm Disruption.

作者信息

Tuck Benjamin, Watkin Elizabeth, Somers Anthony, Forsyth Maria, Machuca Laura L

机构信息

Curtin Corrosion Centre, WA School of Mines: Minerals, Energy and Chemical Engineering, Curtin University, Kent Street, Bentley, WA 6102, Australia.

Curtin Medical School, Curtin University, Kent Street, Bentley, WA 6102, Australia.

出版信息

Microorganisms. 2022 Jun 15;10(6):1227. doi: 10.3390/microorganisms10061227.

Abstract

Biofilm formation is a global health, safety and economic concern. The extracellular composition of deleterious multispecies biofilms remains uncanvassed, leading to an absence of targeted biofilm mitigation strategies. Besides economic incentives, drive also exists from industry and research to develop and apply environmentally sustainable chemical treatments (biocides); especially in engineered systems associated with the marine environment. Recently, extracellular DNA (eDNA) was implicated as a critical structural polymer in marine biofilms. Additionally, an environmentally sustainable, multi-functional biocide was also introduced to manage corrosion and biofilm formation. To anticipate biofilm tolerance acquisition to chemical treatments and reduce biocide application quantities, the present research investigated eDNA as a target for biofilm dispersal and potential enhancement of biocide function. Results indicate that mature biofilm viability can be reduced by two-fold using reduced concentrations of the biocide alone (1 mM instead of the recommended 10 mM). Importantly, through the incorporation of an eDNA degradation stage, biocide function could be enhanced by a further ~90% (one further log reduction in viability). Biofilm architecture analysis post-treatment revealed that endonuclease targeting of the matrix allowed greater biocide penetration, leading to the observed viability reduction. Biofilm matrix eDNA is a promising target for biofilm dispersal and antimicrobial enhancement in clinical and engineered systems.

摘要

生物膜形成是一个关乎全球健康、安全和经济的问题。有害多物种生物膜的细胞外组成仍未得到充分研究,导致缺乏针对性的生物膜缓解策略。除了经济激励因素外,行业和研究领域也有动力去开发和应用环境可持续的化学处理方法(杀菌剂);特别是在与海洋环境相关的工程系统中。最近,细胞外DNA(eDNA)被认为是海洋生物膜中的一种关键结构聚合物。此外,还引入了一种环境可持续的多功能杀菌剂来控制腐蚀和生物膜形成。为了预测生物膜对化学处理产生耐受性并减少杀菌剂的用量,本研究将eDNA作为生物膜分散的靶点以及增强杀菌剂功能的潜在目标进行了调查。结果表明,单独使用浓度降低的杀菌剂(1 mM而不是推荐的10 mM)可使成熟生物膜的活力降低两倍。重要的是,通过加入一个eDNA降解阶段,杀菌剂的功能可进一步增强约90%(活力进一步降低一个对数级)。处理后对生物膜结构的分析表明,针对基质的核酸内切酶可使杀菌剂有更大的渗透能力,从而导致观察到的活力降低。生物膜基质eDNA是临床和工程系统中生物膜分散和抗菌增强的一个有前景的靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0193/9228965/b2c930b8e2dd/microorganisms-10-01227-g001.jpg

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