
Occurrence of Antibiotic Residues and Antibiotic-Resistant Bacteria in Nile Tilapia Sold in Some Markets in Accra, Ghana: Public Health Implication
Author(s) -
Eric S. Donkor,
Isaac Anim-Baidoo,
Evans Fei,
Collins Amponsah,
Michael Olu-Taiwo,
David Nana-Adjei,
Enid Owusu,
Audrey Forson
Publication year - 2018
Publication title -
journal of food research
Language(s) - English
Resource type - Journals
eISSN - 1927-0895
pISSN - 1927-0887
DOI - 10.5539/jfr.v7n6p129
Subject(s) - nile tilapia , antibiotics , enterobacter cloacae , antibiotic resistance , oreochromis , ciprofloxacin , biology , ampicillin , tilapia , microbiology and biotechnology , edwardsiella tarda , veterinary medicine , gentamicin , aquaculture , cefotaxime , enterobacter , fish farming , bacteria , klebsiella pneumoniae , medicine , escherichia coli , fishery , fish <actinopterygii> , biochemistry , genetics , gene
In Ghana there are concerns that antibiotics may be used inappropriately to boost fish production, though no study has investigated this problem. To provide preliminary insights into public health aspects of the problem, we investigated the occurrence of antibiotic residues and antibiotic-resistant bacteria in Nile tilapia (Oreochromis niloticus), a fish commonly cultivated and consumed in Ghana. Two hundred Nile Tilapia fish were randomly sampled from four major markets in Accra, the capital city of Ghana. One hundred samples were screened for antibiotic residues using a microbial inhibition plate test that detects sixteen different antibiotics commonly used in animal husbandry and aquaculture. The other 100 samples were cultured for bacteria using direct culture methods, and the isolates were tested against seven antibiotics by the Kirby Bauer method. The overall prevalence of antibiotic residues in the fish samples was 7%. Bacteria that were isolated from the fish samples were Shigella sonnei (10%), Enterobacter cloacae (7%), Escherichia coli (6%), Salmonella Typhi (3%) and Klebsiella pneumoniae and Proteus mirabilis (2%). All bacteria isolated were susceptible to gentamicin and ciprofloxacin but resistant to ampicillin. Multi-drug resistance (ie resistance to three or more different classes of antibiotics) occurred in 86.7% of the isolates. Nile Tilapia sold in Accra is a source of multi-drug resistant bacteria. Consumption of the fish can also lead to significant exposure to antibiotic residues.