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Occurrence, Antimicrobial Resistance, Virulence, and Biofilm Formation Capacity of Spp. and Spp. Isolated from Raw Seafood Marketed in Bangkok, Thailand

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Journal Vet World
Date 2022 Oct 3
PMID 36185513
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Abstract

Background And Aim: Bacteria of the genera and cause seafood-borne zoonoses, which may have a significant impact on food safety, economy, and public health worldwide. The presence of drug-resistant and biofilm-forming phenotypes in the food chain increases the risk for consumers. This study aimed to investigate the characteristics, virulence, biofilm production, and dissemination of antimicrobial-resistant pathogens isolated from seafood markets in Bangkok, Thailand.

Materials And Methods: A total of 120 retail seafood samples were collected from 10 local markets in Bangkok and peripheral areas. All samples were cultured and the and genera were isolated using selective agar and biochemical tests based on standard protocols (ISO 21872-1: 2017). The antibiotic susceptibility test was conducted using the disk diffusion method. The presence of hemolysis and protease production was also investigated. Polymerase chain reaction (PCR) was used to determine the presence of the A gene. Furthermore, biofilm formation was characterized by microtiter plate assay and scanning electron microscopy.

Results: The bacterial identification test revealed that 35/57 (61.4%) belonged to the genus and 22/57 (38.6%) to the genus. The Kirby-Bauer test demonstrated that 61.4% of the isolates were resistant to at least one antibiotic and 45.61% had a high multiple antibiotic resistance index (≥0.2). PCR analysis indicated that 75.44% of the bacteria harbored the A gene. Among them, 63.16% exhibited the hemolysis phenotype and 8.77% showed protease activity. The biofilm formation assay demonstrated that approximately 56.14% of all the isolates had the potential to produce biofilms. The moderate biofilm production was the predominant phenotype.

Conclusion: The results of this study provide evidence of the multiple drug resistance phenotype and biofilm formation capacity of and species contaminating raw seafood. Effective control measures and active surveillance of foodborne zoonoses are crucial for food safety and to decrease the occurrence of diseases associated with seafood consumption.

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References
1.
Morris Jr J . Cholera and other types of vibriosis: a story of human pandemics and oysters on the half shell. Clin Infect Dis. 2003; 37(2):272-80. DOI: 10.1086/375600. View

2.
BAUER A, KIRBY W, SHERRIS J, Turck M . Antibiotic susceptibility testing by a standardized single disk method. Am J Clin Pathol. 1966; 45(4):493-6. View

3.
Shaw K, Rosenberg Goldstein R, He X, Jacobs J, Crump B, Sapkota A . Antimicrobial susceptibility of Vibrio vulnificus and Vibrio parahaemolyticus recovered from recreational and commercial areas of Chesapeake Bay and Maryland Coastal Bays. PLoS One. 2014; 9(2):e89616. PMC: 3934932. DOI: 10.1371/journal.pone.0089616. View

4.
Rasmussen-Ivey C, Figueras M, McGarey D, Liles M . Virulence Factors of Aeromonas hydrophila: In the Wake of Reclassification. Front Microbiol. 2016; 7:1337. PMC: 4997093. DOI: 10.3389/fmicb.2016.01337. View

5.
Elhadi N, Radu S, Chen C, Nishibuchi M . Prevalence of potentially pathogenic Vibrio species in the seafood marketed in Malaysia. J Food Prot. 2004; 67(7):1469-75. DOI: 10.4315/0362-028x-67.7.1469. View