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3 résultats pour « antibiotic resistance »
Genetic Diversity, Extended-Spectrum Beta-Lactamase (ESBL) Screening, and Potential Public Health Implications of Gram-Negative Bacteria Recovered from Man-Made Lakes and Surrounding Vegetables
Multisectoriel Approche One Health multi-interface Resistance aux antimicrobiens multi-secteurs

Genetic Diversity, Extended-Spectrum Beta-Lactamase (ESBL) Screening, and Potential Public Health Implications of Gram-Negative Bacteria Recovered from Man-Made Lakes and Surrounding Vegetables

The emergence and dissemination of extended-spectrum beta-lactamase (ESBL)-producing bacteria pose a major public health threat, necessitating a One Health approach to addressing this threat. Thus, the diversity, ESBL production, and potential public health implications of Gram-negative bacteria recovered from man-made lakes and surrounding lettuce in Yamoussoukro, Côte d’Ivoire were assessed in this study. Also, the lakes’ physicochemical parameters were assessed and correlated with bacteria community using Pearson correlation. A total of 68 Gram-negative bacterial isolates were recovered from the samples and identified via 16S rDNA gene sequencing. Phylogenetic analysis suggested multiple genus-/species-level variations within the isolates. Escherichia coli was the most prevalent in lake water (39.5%), while Acinetobacter was the dominant genus in lettuce (30%). E. coli isolates showed high resistance to ampicillin (90.9%), cefepime (72.7%), cefotaxime (68.2%), and aztreonam (63.6%). Moreover, ESBL production was confirmed in E. coli isolates (22.05%), predominantly mediated by the blaCTX-M gene. Multidrug-resistant phenotypes were widespread, yielding similar multiple antibiotic resistance index (MARI) values in water (0.27–0.63) and lettuce (0.27–0.81). These data indicate high environmental contamination, which unfortunately is not being taken into account by lettuce producers according to an interview. Statistical analyses showed a significant relationship between bacterial diversity and lakes’ physicochemical parameters, including dissolved oxygen, pH, and turbidity. The basic education level of farmers, the prevalence of ESBL-producing E. coli, and the high prevalence of MDR Gram-negative bacteria in both environmental and crop sources in Yamoussoukro underscore the need for both integrated surveillance and management strategies to mitigate potential microbial public health risks within a One Health framework.

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Dr FOSSOU Kouakou Romain
👁 68 📥
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Santé Environnementale Résistance aux antimicrobiens en environnement

Antibiotic Resistance of Enterobacteria Isolated from Medicinal Plant Powders Marketed in Abidjan, Côte d’Ivoire

Objective: Medicinal plant powders are widely used in Côte d’Ivoire for treating various ailments and are often marketed without rigorous health controls. This lack of regulation increases the risk of contamination by pathogenic bacteria, particularly antibiotic-resistant enterobacteria, which poses a significant challenge for infection control. Methods: This study aimed to evaluate the antibiotic susceptibility of enterobacteria isolated from 100 samples of medicinal powders sold in different markets in Abidjan. Bacterial identification was performed using biochemical and proteomic methods (MALDI-TOF). Antibiotic susceptibility testing was conducted using the agar diffusion method, following the EUCAST/CASFM 2024_V1.0 guidelines Results: A total of 48 enterobacterial strains were isolated, including Enterobacter hormaechei (21), Escherichia coli (18), Citrobacter freundii (2), Enterobacter asburiae (2), Klebsiella pneumoniae (2), Enterobacter cloacae (1), Enterobacter bugandensis (1), and Cronobacter sakazakii (1). Antibiotic susceptibility testing revealed that 54.16% of the strains were resistant to at least one antibiotic, with the highest resistance rates observed for pefloxacin (25%) and ertapenem (12.5%). Resistance to ertapenem, a carbapenem frequently used as a last-resort treatment, is particularly concerning. Conclusions: The presence of enterobacteria in these samples suggests fecal contamination, reflecting poor hygienic conditions. These findings highlight the potential risk posed by medicinal plant powders as vectors of antibiotic-resistant bacterial strains. Implementing strict quality control measures and enhanced surveillance of antibiotic resistance is crucial to reducing their impact on public health.

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Dr KONAN Kouadio Fernique
👁 65 📥
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Santé Humaine Résistance aux antimicrobiens

Antibiotic Resistance and Detection of Qnr Genes in isolated Uropathogenic Bacteria from Patients with Urinary Catheters

Antibiotic resistance in bacteria is a serious global public health problem. This study aimed to characterize antibiotic resistance genes in patients with urinary catheters. The study involved bacterial strain collection, antibiotic susceptibility testing, and molecular characterization for the detection of genes mediated by fluoroquinolone resistance. A total of 81 strains were collected. Strain distribution showed that Staphylococcus aureus was the most prevalent species (44.44%, n=36). Resistance profiling showed that coagulase-negative Staphylococcus strains (n=12) and Acinetobacter baumannii strains (n=5) expressed 100% resistance to cefoxitin and all tested beta-lactam antibiotics, respectively. Acinetobacter baumannii was resistant to ciprofloxacin (100%, n=5). However, amikacin showed greater activity against Pseudomonas aeruginosa (n=28) and Acinetobacter baumannii (n=5) strains, with 25% and 0% activity, respectively. Molecular gene characterization identified the qnr A, qnr B, and qnr S genes. The strains exhibited a high diversity of resistance genes, with 12.5%, 77.5%, and 60% observed in qnr A, qnr B, and qnr S, respectively. Co-expression of fluoroquinolone resistance genes was demonstrated in 30 strains. This study highlights the high prevalence of antibiotic-resistant bacteria and underscores the crucial role of microbiological and molecular surveillance of bacteria. The results highlight the need for rigorous antibiotic management to prevent the spread of resistant strains.

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Dr KONAN Kouadio Fernique
👁 58 📥