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Spread of Multidrug-Resistant Enterobacterales Strains Isolated From the Hospital Environment and Clinical Specimens
Sana Bahri1,2, Meriem Souguir1, Sana Azaiez1
1Laboratory of Metabolic Biophysics and Applied Pharmacology, Ibn Al Jazzar Faculty of Medicine, University of Sousse, Sousse, TUN.
Abstract:
The hospital environment is a recognized reservoir for multidrug-resistant (MDR) bacteria, and inadequate hygiene practices by healthcare workers (HCWs) may contribute to the transmission and persistence of healthcare-associated infections (HAIs), particularly in ICUs. This study investigated the presence, genetic characteristics, and transmission pathways of MDR Enterobacterales in the environment and among HCWs in three ICUs, such as surgical (ICU-S), medical (ICU-M), and pediatric (ICU-P), at Sahloul Hospital, Sousse, Tunisia. From September to December 2020, 140 samples were collected from environmental surfaces (n = 114) and HCWs' hands (n = 26). Of these, nine samples (6.42%) tested positive for resistant Enterobacterales, yielding 15 resistant isolates, including one Klebsiella pneumoniae and eight Enterobacter cloacae. Notably, no resistant Enterobacterales were recovered from HCWs' hand samples. Whole-genome sequencing was performed on seven isolates (five clinical and two environmental) to assess genetic relatedness and resistance profiles. Three distinct sequence types (STs) of K. pneumoniae were identified: ST147 (clinical and environmental), ST307, and ST353. The ST147 isolate from an antiseptic bottle in ICU-M co-produced CTX-M-15 and NDM-1 enzymes and carried the biocide resistance gene qacE. Despite both being ST147, the environmental and clinical isolates were not clonal (140 single-nucleotide polymorphism (SNP) differences). The ST307 isolate from a blood sample co-produced CTX-M-15 and OXA-204. Among E. cloacae isolates, ST344 (n = 2) was identified from two different ICUs and differed by only 6 SNPs, suggesting inter-ICU transmission. These isolates harbored blaACT-16, blaCTX-M-15, and multiple other resistance genes. One environmental E. cloacae isolate belonged to the clone ST78 and was recovered from a soap dispenser in ICU-P, carrying blaACT-15 and fosA. These findings underscore the potential of contaminated surfaces to harbor and disseminate MDR Enterobacterales. Strengthened infection control measures, environmental monitoring, and genomic surveillance are essential to reduce HAIs in ICU settings.
Insights
Multidrug-resistant Enterobacterales were found on hospital surfaces, not healthcare workers' hands, highlighting environmental contamination risks in intensive care units (ICUs). Enhanced hygiene and environmental monitoring are crucial for preventing healthcare-associated infections.
Area of Science:
- Microbiology
- Infectious Diseases
- Genomics
Background:
- Hospital environments, especially intensive care units (ICUs), are known reservoirs for multidrug-resistant (MDR) bacteria.
- Inadequate hygiene practices by healthcare workers (HCWs) can facilitate the transmission of healthcare-associated infections (HAIs).
Purpose of the Study:
- To investigate the presence, genetic characteristics, and transmission routes of MDR Enterobacterales in the ICU environment and among HCWs.
- To identify specific MDR Enterobacterales strains and their resistance mechanisms within Sahloul Hospital's ICUs.
Main Methods:
- Collection of 140 samples from environmental surfaces (n=114) and HCWs' hands (n=26) across three ICUs (surgical, medical, pediatric).
- Isolation and identification of resistant Enterobacterales.
- Whole-genome sequencing (WGS) of selected isolates to determine genetic relatedness, sequence types (STs), and resistance genes.
Main Results:
- Nine environmental samples (6.42%) yielded 15 resistant Enterobacterales isolates (one Klebsiella pneumoniae, eight Enterobacter cloacae); no resistant bacteria were found on HCW hands.
- WGS identified K. pneumoniae ST147 (clinical and environmental) with co-produced CTX-M-15 and NDM-1, and E. cloacae ST344 suggesting inter-ICU transmission.
- Environmental isolates, including K. pneumoniae from an antiseptic bottle and E. cloacae from a soap dispenser, carried significant resistance genes.
Conclusions:
- Contaminated surfaces in ICUs can act as reservoirs for MDR Enterobacterales, posing a risk for HAIs.
- Genomic surveillance reveals potential transmission pathways, emphasizing the need for environmental monitoring.
- Strengthened infection control, environmental monitoring, and genomic surveillance are vital for reducing HAIs in critical care settings.
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