4.7 Article

Antifouling activity of isonitrosoacetanilides against microfouling and macrofouling

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ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH
卷 30, 期 10, 页码 26435-26444

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SPRINGER HEIDELBERG
DOI: 10.1007/s11356-022-24016-2

关键词

Amphibalanus amphitrite; Antibiofilm activity; Bacterial biofilm; Biofouling; Compounds

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Biofouling causes damage to man-made surfaces, and there is a need for novel, effective, and environmentally friendly antifouling alternatives. This study investigated the antifouling potential of six isonitrosoacetanilide compounds. Some of these compounds showed nontoxic activity against microfouling and macrofouling, and also had biofilm eradication potential. These compounds could be used as friendly antifouling agents with paints.
Biofouling is responsible for structural and economic damage to man-made surfaces. Antifouling paints with biocides have been applied to structures to avoid organism adhesion; however, they have high toxicity and are not able to prevent all biofouling processes, necessitating the periodic mechanical removal of organisms and paint reapplication. Thus, there is an urgent demand for novel, effective, and environmentally friendly antifouling alternatives. As isonitrosoacetanilide is the precursor for many compounds with antibacterial activity, we believe that it could have antifouling activity against microfouling and, consequently, against macrofouling. The aim of this work was to investigate the antifouling potential of six isonitrosoacetanilide compounds and their toxicity. The compounds were employed at different concentrations (0.625-1.25-2.5-5-10 mu g mL(-1)) in this study. The biofilm and planktonic bacteria inhibition and biofilm eradication potential were evaluated by crystal violet assay, while Amphibalus amphitrite barnacle settlement was evaluated by cyprid settlement assay. Toxicity evaluation (LC50 and EC50) was performed with A. amphitrite nauplii II and cyprid larvae. At least one of the tested concentrations of 4-Br-INA, 4-CH3-INA, and 2-Br-INA compounds showed nontoxic antifouling activity against microfouling (antibiofilm) and macrofouling (antisettlement). However, only 4-CH3-INA and 2-Br-INA also showed biofilm eradication potential. These compounds with antibiofilm activity and nontoxic effects could be combined with acrylic base paint resin or added directly into commercial paints in place of toxicant biocides to cover artificial structures as friendly antifouling agents.

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