Virulence Potential, Biofilm Formation, and Disinfectants Control of Escherichia coli from Raw Milk Bulk Tanks in the Southeast of Brazil

Author:

Soares Sâmea Joaquim Aguiar1ORCID,Guimarães Felipe de Freitas1ORCID,Rossi Gabriel Augusto Marques2ORCID,Guerra Simony Trevizan1,Dalanezi Felipe Morales1ORCID,Lopes Bruna Churocof1,Ribeiro Mioni Mateus de Souza3ORCID,Yamakawa Ana Carolina1ORCID,da Silva Evelyn Cristine1,de Moraes Gustavo Nunes1,Bertolini Amanda Bezerra1,Ribeiro Márcio Garcia1,de Figueiredo Pantoja José Carlos1ORCID,Lucheis Simone Baldini4,Rall Vera Lucia Mores5ORCID,Hernandes Rodrigo Tavanelli5ORCID,da Silva Leite Domingos6,Langoni Helio1ORCID

Affiliation:

1. Department of Veterinary Hygiene and Public Health, School of Veterinary Medicine and Animal Sciences, São Paulo State University (UNESP), Botucatu 18618-687, SP, Brazil

2. Department of Veterinary Medicine, Vila Velha University, Vila Velha 29107-553, ES, Brazil

3. Department of Pathology, Reproduction and One Health, Faculty of Agricultural and Veterinary Sciences—FCAV, São Paulo State University, Jaboticabal 14884-900, SP, Brazil

4. Paulista Agency of Agribusiness Technology (APTA), Bauru 01037-912, SP, Brazil

5. Department of Microbiology and Immunology, São Paulo State University (UNESP), Botucatu 18618-687, SP, Brazil

6. Department of Genetics, Evolution, Microbiology, and Immunology, University of Campinas (UNICAMP), Campinas 13083-970, SP, Brazil

Abstract

Escherichia coli is a major player in foodborne illnesses, capable of forming biofilms on dairy facilities, leading to milk contamination. Thus, we examined the capacity of E. coli strains from raw milk bulk tanks to form biofilms on surfaces made of polystyrene, stainless steel, and silicone; the potential links between biofilm formation with genes responsible for fimbriae and virulence factors of extra-intestinal E. coli (ExPEC); and the susceptibility of biofilm-forming isolates to iodine and chlorhexidine digluconate. Out of 149 E. coli strains, 42.28% (63/149) formed biofilm on polystyrene, 56.38% (84/149) on silicone, and 21.48% (32/149) on stainless steel. The frequency of genes was: fimH (100%), hlyA (5.4%), irp2 (2.7%), sitA (10.7%), ompT (43.6%), and traT (98%). No biofilm developed when disinfectants were used prior to biofilm formation. However, iodine and chlorhexidine digluconate allowed 25.40% (16/63) of isolates displaying growth after a mature biofilm was formed. The presence of biofilm on different surfaces emphasizes the vital need for thorough equipment cleaning, both in farms and in industrial dairy settings. Rapid disinfection is crucial, given the reduced susceptibility of potentially pathogenic E. coli after biofilm maturity.

Funder

São Paulo Research Foundation

Publisher

MDPI AG

Subject

Agricultural and Biological Sciences (miscellaneous),Veterinary (miscellaneous)

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