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Genetic characterization and antimicrobial susceptibility of Escherichia coli isolated from household water sources in northern Ghana

Genetic characterization and antimicrobial susceptibility of Escherichia coli isolated from household water sources in northern Ghana

Kichana, Elvis, Addy, Francis and Dufailu, Osman Adamu ORCID logoORCID: https://orcid.org/0000-0002-8291-9832 (2022) Genetic characterization and antimicrobial susceptibility of Escherichia coli isolated from household water sources in northern Ghana. Journal of Water and Health, 20 (5). pp. 770-780. ISSN 1477-8920 (Print), 1996-7829 (Online) (doi:10.2166/wh.2022.197)

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Abstract

The microbial quality of household water is an important issue in developing countries, especially in Ghana, where many people still depend on unimproved sources of water. The present study investigated the prevalence, genetic characteristics, and antimicrobial resistance profile of Escherichia coli from surface water sources. Fifty-two water samples were analyzed by using a spread plate, a biochemical test, and multiplex polymerase chain reactions. E. coli was isolated from each of the 52 water samples. Of these isolates, 75% were noted to possess virulence genes. Approximately 54% of the isolates were characterized as follows: enterotoxigenic E. coli (ETEC, 10.26%), enteropathogenic E. coli (EPEC, 17.95%), verotoxigenic E. coli (VTEC, 23.07%), and enteroinvasive E. coli (EIEC, 2.57%). Eighteen of the fifty-two isolates could not be characterized due to heterogeneity in banding. The disc diffusion method was used to test for antimicrobial susceptibility. The isolates were most resistant to ceftazidime, augmentin, and cefuroxime. Multidrug resistance was recorded in 48.1% of the isolates. In contrast, the isolates were most susceptible to ciprofloxacin (86.5%), nitrofurantoin (84.6%), and ofloxacin (75%). These results revealed a high diversity and widespread of E. coli in northern Ghana. The study provides important data for public health nationwide surveillance of E. coli in surface water across the country.

Item Type: Article
Uncontrolled Keywords: diarrhoea, Escherichia coli, multidrug resistance, surface water, virulence genes
Subjects: Q Science > Q Science (General)
Q Science > QR Microbiology
Faculty / School / Research Centre / Research Group: Faculty of Engineering & Science
Faculty of Engineering & Science > School of Science (SCI)
Last Modified: 02 Apr 2026 08:20
URI: https://gala.gre.ac.uk/id/eprint/35970

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