Microbiological Quality, Biochemical Characterization, and Antimicrobial Resistance Profiles of Foodborne Bacterial Pathogens Associated with Ready-to-Eat Foods Served During Public Gatherings in Kano State, Nigeria.
DOI:
https://doi.org/10.70882/3sgpvt19Keywords:
Ready-to-Eat Food; Foodborne Pathogens; Biochemical Characterization; Antimicrobial Resistance; Multidrug Resistance; Public Health; Kano State; NigeriaAbstract
Large-scale public gatherings in Nigeria, particularly in Kano State, frequently
involve mass preparation and serving of ready-to-eat (RTE) foods. When hygiene
practices are compromised, these foods can serve as vehicles for foodborne
pathogens, including multidrug-resistant (MDR) strains, posing significant public
health risks. This study evaluated the microbiological quality, biochemical
characteristics, and antimicrobial susceptibility patterns of bacterial pathogens
isolated from RTE foods served at festive and public events in Kano State, Nigeria.
A cross-sectional laboratory-based study was conducted on 100 RTE food samples
comprising rice-based dishes, salads, and meat products, collected aseptically using
stratified random sampling. Total viable counts (TVC) and coliform counts were
determined using the pour-plate method. Isolates were identified by colony
morphology, Gram staining, and conventional biochemical tests. Antimicrobial
susceptibility was assessed using the Kirby–Bauer disk diffusion method according
to Clinical and Laboratory Standards Institute (CLSI) guidelines. MDR was defined
as non-susceptibility to at least one agent in three or more antimicrobial
categories. Mean TVC ranged from 4.82 ± 0.41 to 6.15 ± 0.53 log CFU/g, with salads
having the highest microbial loads. Pathogen detection rates were Escherichia coli
(34%), Staphylococcus aureus (29%), Salmonella spp. (19%), Klebsiella pneumoniae
(12%), and Bacillus cereus (8%). Resistance to ampicillin (78–92%) and tetracycline
(61–74%) was high, while 58% of isolates were MDR. Salads and meat products
were significantly more contaminated than rice-based dishes (p < 0.05). These
findings demonstrate substantial microbial contamination and MDR pathogens,
emphasizing the need for improved food-handler training, cold-chain
infrastructure, and routine microbiological surveillance.
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