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评价一种新型多功能抑制剂化合物在海洋环境中防止碳钢生物膜形成的效果。

Evaluation of a novel, multi-functional inhibitor compound for prevention of biofilm formation on carbon steel in marine environments.

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

Sci Rep. 2021 Aug 3;11(1):15697. doi: 10.1038/s41598-021-94827-9.

Abstract

Chemical biocides remain the most effective mitigation strategy against microbiologically influenced corrosion (MIC), one of the costliest and most pervasive forms of corrosion in industry. However, toxicity and environmental concerns associated with these compounds are encouraging the development of more environmentally friendly MIC inhibitors. In this study, we evaluated the antimicrobial effect of a novel, multi-functional organic corrosion inhibitor (OCI) compound, cetrimonium trans-4-hydroxy-cinnamate (CTA-4OHcinn). Attachment of three bacterial strains, Shewanella chilikensis, Pseudomonas balearica and Klebsiella pneumoniae was evaluated on wet-ground (120 grit finish) and pre-oxidised carbon steel surfaces (AISI 1030), in the presence and absence of the new OCI compound. Our study revealed that all strains preferentially attached to pre-oxidised surfaces as indicated by confocal laser scanning microscopy, scanning electron microscopy and standard colony forming unit (CFU) quantification assays. The inhibitor compound at 10 mM demonstrated 100% reduction in S. chilikensis attachment independent of initial surface condition, while the other two strains were reduced by at least 99.7% of the original viable cell number. Our results demonstrate that CTA-4OHcinn is biocidal active and has promise as a multifunctional, environmentally sound MIC inhibitor for industrial applications.

摘要

化学杀生剂仍然是防止微生物影响腐蚀(MIC)的最有效缓解策略,MIC 是工业中最昂贵和最普遍的腐蚀形式之一。然而,这些化合物的毒性和环境问题促使人们开发更环保的 MIC 抑制剂。在这项研究中,我们评估了一种新型多功能有机腐蚀抑制剂(OCI)化合物十六烷基三甲基溴化铵反式-4-羟基肉桂酸盐(CTA-4OHcinn)的抗菌效果。在存在和不存在新 OCI 化合物的情况下,评估了三种细菌菌株希瓦氏菌(Shewanella chilikensis)、巴利阿里假单胞菌(Pseudomonas balearica)和肺炎克雷伯菌(Klebsiella pneumoniae)在湿磨(120 目)和预氧化碳钢表面(AISI 1030)上的附着情况。我们的研究表明,所有菌株都优先附着在预氧化表面上,这一点通过共聚焦激光扫描显微镜、扫描电子显微镜和标准菌落形成单位(CFU)定量分析得到证实。抑制剂化合物在 10 mM 时,无论初始表面条件如何,均可使希瓦氏菌的附着率降低 100%,而其他两种菌株的活菌数减少至少 99.7%。我们的结果表明,CTA-4OHcinn 具有杀菌活性,有望成为一种多功能、环保的 MIC 抑制剂,适用于工业应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a8e/8333064/bbf0759211b2/41598_2021_94827_Fig1_HTML.jpg

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