Ready-to-eat street food: a potential source for dissemination of multidrug-resistant Escherichia coli epidemic clones in Quito, Ecuador.
Jeannete ZuritaF YánezG SevillanoD Ortega-ParedesA Paz Y MiñoPublished in: Letters in applied microbiology (2020)
Ready-to-eat food contamination with ESBL-producing Escherichia coli is a growing health concern. Some of these strains also are epidemic clones and can cause community-associated infections that are difficult to treat. In this study, the occurrence of ESBL-producing E. coli contaminated ready-to-eat street food in Quito, Ecuador was evaluated. In total, 150 samples were collected randomly in the most crowded sites of the city. In all, 34 samples (34/150; 22·6%) were positive for total thermotolerant (44·5°C) coliforms resistant to cefotaxime. MALDI-TOF analysis identified that the E. coli was found in 20 food samples (20/34; 59%). ESBL gene blaCTX-M-55 was identified in nine isolates, blaCTX-M-15 in six isolates, blaCTX-M-14 in two isolates, and one isolate each harboured blaCTX-M-24 , blaCTX-M-65 , blaCTX-M-55 and blaCTX-M-8 . Phylogenetic groups like A and B1 were the most common, followed by groups D and B2. MLST analysis identified 12 different sequence types (STs), the most common was ST162. Recognized epidemic clonal groups ST410, ST131 and ST744 were encountered. Ready-to-eat street food is a potential way of spreading ESBL-producing E. coli epidemic clones in Quito, Ecuador. SIGNIFICANCE AND IMPACT OF THE STUDY: This study identified ESBL-producing Escherichia coli epidemic clones: ST131, ST410 and ST744 in ready-to-eat street food samples. Street food is a possible way to spread harm multidrug-resistant (MDR) E. coli strains in the community. Studies to identify the contamination sources of this kind of food are needed to tackle MDR E. coli dissemination.
Keyphrases
- escherichia coli
- klebsiella pneumoniae
- multidrug resistant
- human health
- risk assessment
- biofilm formation
- drinking water
- gram negative
- mental health
- acinetobacter baumannii
- mass spectrometry
- heavy metals
- social media
- transcription factor
- cystic fibrosis
- ms ms
- dna methylation
- staphylococcus aureus
- data analysis
- health promotion