Abstract
Background: Antibiotic resistance in Klebsiella pneumoniae is a growing clinical concern, largely driven by β-lactamase genes that increase multidrug resistance and limit treatment options of infections.
Methods: A cross-sectional study was conducted on 260 K. pneumoniae isolates from various clinical specimens. Bacterial identification was performed using the MALDI-TOF system, and antimicrobial susceptibility testing was carried out using the BD Phoenix M50 automated system. Common ESBL and carbapenemase genes were detected via multiplex PCR
Results: Among 260 Klebsiella pneumoniae isolates respiratory 51.1%, pus 16.5%, blood 12.3%, urine 9.6%, other fluids 8.1%). Overall susceptibility was low across most antibiotic classes: β-lactams (<25%), quinolones (21.2%), and carbapenems (≤40%). Only aminoglycosides and ceftazidime/avibactam showed susceptibility rates above 50%. ESBL genes were detected in 74.6% (blaCTX-M 40.7%, blaSHV 23.1%, blaOXA-1 9.2%); carbapenemase genes in 58.1% (blaKPC 23.1%, blaNDM 10.0%, blaOXA-48 6.2%), with blaNDM -blaOXA-48 co-carriage in 17.7% and concurrent ESBL+carbapenemase in 48.8%. Isolates harboring β-lactamase genes exhibited distinct antibiotic susceptibility profiles compared with non-harboring isolates.
Conclusion: Antibiotic susceptibility among Klebsiella pneumoniae isolates was very low and differed by resistance genotype; the high prevalence of isolates co-harbouring ESBL and carbapenemase genes is an alarming finding that warrants attention.
Nội dung dành cho thành viên
Vui lòng đăng nhập để đọc toàn văn bài báo và tải tệp PDF.
Nếu bạn chưa có tài khoản, hãy đăng ký miễn phí.

This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.
Copyright (c) 2025 Journal of Clinical Medicine Hue Central Hospital