The Antimicrobial Resistance (AMR) Rates of Enterobacterales in a Rural Hospital from the Eastern Region, Ghana: A Retrospective Study, 2022

Author:

Seijas-Pereda Laura12ORCID,Rescalvo-Casas Carlos12,Hernando-Gozalo Marcos23,Angmorkie-Eshun Vida4,Agyei Eunice4,Adu-Gyamfi Vivian4,Sarsah Isaac4,Alfonso-Romero Maite4,Cuadros-González Juan12,Soliveri-de Carranza Juan1,Pérez-Tanoira Ramón12ORCID

Affiliation:

1. Departamento de Biomedicina y Biotecnología, Facultad de Medicina, Universidad de Alcalá, 28805 Madrid, Spain

2. Departamento de Microbiología Clínica, Hospital Universitario Príncipe de Asturias, 28805 Madrid, Spain

3. Departamento de Química Orgánica y Química Inorgánica, Facultad de Farmacia, Universidad de Alcalá, 28805 Madrid, Spain

4. Laboratory of Microbiology, Saint Dominic’s Hospital, Akwatia P.O. Box 59, Ghana

Abstract

Low- and middle-income countries bear a disproportionate burden of antimicrobial resistance and often lack adequate surveillance due to a paucity of microbiological studies. In this 2022 study, our goal was to contribute to a more precise antimicrobial treatment by understanding the prevalence of resistance in a rural environment, promoting antibiotic stewardship, and raising awareness about antimicrobial resistance. We assessed the prevalence of Multidrug-Resistant (MDR) and Extensively Drug-Resistant (XDR) Enterobacterales in clinical samples from 2905 patients being treated at Saint Dominic’s Hospital, Akwatia, in the countryside of the Eastern Region, Ghana, in the year 2022. To this purpose, the samples were cultured on agar plates prepared in the laboratory using purified Oxoid™ Thermo Scientific™ agar (Thermo Fisher Scientific; Waltham, MA, USA). Cystine Lactose Electrolyte-Deficient (CLED) agar was used for urine samples, while blood agar, chocolate agar, and MacConkey agar were used for the rest of the specimens tested (HVS, blood, BFA, sputum). Antimicrobial susceptibility was determined on site using the disc diffusion method (Kirby-Bauer test). MDR bacteria accounted for more than half (53.7%) of all microorganisms tested for three or more antibiotics and 37.3% of these were XDR. Multivariate regression analysis was performed to identify risk factors associated with acquiring MDR/XDR bacteria. The results showed an increased likelihood of MDR acquisition linked to being male (OR 2.39, p < 0.001 for MDR and OR 1.95, p = 0.027 for XDR), higher age (OR 1.01, p = 0.049 for MDR), non-sputum samples (OR 0.32, p = 0.009 for MDR), and urine samples (OR 7.46, p < 0.001 for XDR). These findings emphasize the urgency for surveillance and control of antimicrobial resistance; to this end, making accurate diagnostics, studying the microorganism in question, and conducting susceptibility testing is of the utmost importance.

Publisher

MDPI AG

Subject

Pharmacology (medical),Infectious Diseases,Microbiology (medical),General Pharmacology, Toxicology and Pharmaceutics,Biochemistry,Microbiology

Reference39 articles.

1. World Health Organization (2014). WHO Global Report on Surveillance 2014, World Health Organization. WHO 2014 AMR Rep.

2. Antibiotic Resistance Patterns in Human, Animal, Food and Environmental Isolates in Ghana: A Review;Saba;Pan Afr. Med. J.,2020

3. A Systematic Review on the Occurrence of Antimicrobial-Resistant Escherichia Coli in Poultry and Poultry Environments in Bangladesh between 2010 and 2021;Islam;Biomed Res. Int.,2023

4. Carriage of Antibiotic Resistant Bacteria and Associated Factors among Food Handlers in Tamale Metropolis, Ghana: Implications for Food;Vicar;Microbiol. Insights,2023

5. Extended-Spectrum β-Lactamase/AmpC- and Carbapenemase-Producing Enterobacteriaceae in Animals: A Threat for Humans?;Madec;Clin. Microbiol. Infect.,2017

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