Insights and genetic features of extended-spectrum beta-lactamase producing Escherichia coli isolates from two hospitals in Ghana

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作者
Samiratu Mahazu
Wakana Sato
Alafate Ayibieke
Isaac Prah
Takaya Hayashi
Toshihiko Suzuki
Shiroh Iwanaga
Anthony Ablordey
Ryoichi Saito
机构
[1] Tokyo Medical and Dental University,Department of Molecular Microbiology
[2] Tokyo Medical and Dental University,Department of Environmental Parasitology
[3] Tokyo Medical and Dental University,Department of Molecular Virology
[4] Tokyo Medical and Dental University,Department of Bacterial Pathogenesis
[5] University of Ghana,Department of Bacteriology, Noguchi Memorial Institute for Medical Research
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Scientific Reports | / 12卷
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Recently, the emergence and rapid dissemination of extended-spectrum beta-lactamase (ESBL)-producing bacteria, particularly of the family Enterobacteriaceae, has posed serious healthcare challenges. Here, we determined the antimicrobial susceptibility and genetic characteristics of 164 Escherichia coli strains isolated from infected patients in two hospitals in Ghana. In total, 102 cefotaxime-resistant isolates (62.2%) were identified as ESBL-producers. Multilocus sequence typing of the ESBL-producers identified 20 different sequence types (STs) with ST131 (n = 25, 24.5%) as the dominant group. Other detected STs included ST410 (n = 21, 20.6%) and ST617 (n = 19, 18.6%). All identified ESBL-producers harbored blaCTX-M-14, blaCTX-M-15, or blaCTX-M-27, with blaCTX-M-15 (n = 96, 94.1%) being the most predominant ESBL allele. Further analysis showed that the immediate genetic environment around blaCTX-M-15 is conserved within blaCTX-M-15 containing strains. Five of the 25 ST131 isolates were clustered with clade A, one with sub-clade C1, and 19 with the dominant sub-clade C2. The results show that fluoroquinolone-resistant, blaCTX-M-14- and blaCTX- M-15-producing ESBL E. coli ST131 strains belonging to clade A and sub-clades C1 and C2 are disseminating in Ghanaian hospitals. To the best of our knowledge, this is the first report of the ST131 phylogeny in Ghana.
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