Influence of a triazine derivative-based biocide on microbial biofilms of cutting fluids in contact with different substrates

Author:

Lucchesi Eliane G12,Eguchi Sílvia Y3,Moraes Ângela M2

Affiliation:

1. grid.456723.1 IPEL Itibanyl Produtos Especiais Ltda. Jarinu SP Brazil

2. grid.411087.b 0000000107232494 Department of Engineering of Materials and of Bioprocesses, School of Chemical Engineering University of Campinas Campinas SP Brazil

3. Dosage Pesquisas Laboratoriais Investiga Institutos de Pesquisa Campinas SP Brazil

Abstract

Abstract Although biofilms are often associated with hospital infection problems owing to their high resistance to antimicrobial agents, in recent years biofilms have also been studied in the industrial sector, mainly because they are a major cause of contamination outbreaks in facilities and products. The aim of this study was to investigate whether different materials commonly found in the metalworking industries have different biofilm formation characteristics when in contact with contaminated cutting fluid as well as to establish an optimal concentration of a triazine-based antimicrobial agent to protect the oil/water emulsion and also to delay or interrupt the development of biofilms. Biofilms grown on the surface of carbon steel, stainless steel, aluminum, polyvinyl chloride, and glass were analyzed in terms of cell growth and susceptibility to the tested biocide. The results showed that the type of material used had little influence on cell adhesion or on the microbicide concentration required to control and eradicate microorganisms suspended in the emulsion and in the biofilms.

Publisher

Oxford University Press (OUP)

Subject

Applied Microbiology and Biotechnology,Biotechnology,Bioengineering

Reference24 articles.

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3. Physical and chemical properties of biofilms;Christensen,1990

4. Resistance mechanisms of bacteria to antimicrobial compounds;Cloete;Int Biodeterior Biodegradation,2003

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