Rahman, AmantaHaque, NayeemaHussain, Mohammed TanveerHossain, Md. SakibChowdhury, Ahmed Ishtiaque AminAbedin, Md. FoysalTabassum, TahaniRahman, Md. HajbiurAlam, Mohammad Atique UlIslam, Mohammad RafiqulNaser, Iftekhar BinIslam, Md. ShafiqulMahmud, Zahid Hayat2026-08-232026-08-232026-02-01Rahman A, Haque N, Hussain MT, Hossain MS, Chowdhury AIA, Abedin MF, et al. (2026) Isolation, molecular profiling, and antimicrobial sensitivity patterns of ESBL producing Acinetobacter baumannii in wastewater discharges from Goranchatbari sub-catchment area in Dhaka. PLoS One 21(2): e0341652. https://doi.org/10.1371/journal.pone.0341652193262032-s2.0-105029608929https://hdl.handle.net/10361/29446The World Health Organization has recommended the development of new antimicrobials against Acinetobacter baumannii, one of the six highly significant pathogens. In this study, 28 wastewater samples were collected from the Goranchatbari sub-catchment area in Dhaka city over several periods. The samples were characterized for the presence of Acinetobacter spp. The isolates showing cream, opaque colonies on CHROMagarTM ESBL plates were considered positive for ESBL production. They were further characterized for major antibiotic resistance and pathogenic genes, biofilm production and antibiotic susceptibility testing. Furthermore, the isolates were phylogenetically clustered based on their Enterobacterial Repetitive Intergenic Consensus (ERIC) profiles and correlation matrix analysis was performed. Out of 28 samples, 27 were positive for Acinetobacter spp. and a total of 106/249 (42.6%) sample representative isolates were positive for ESBL production. Out of these 106 isolates, 97 (91.5%) were genotypically confirmed to belong to the Acinetobacter spp. and of which, 72 (74.2%) were genotypically confirmed as Acinetobacter baumannii. Among the distribution of β-lactamase genes, blaTEM was the most prevalent being present in 40/72 (55.6%) isolates, followed by blaSHV in 3/72 (4.2%) isolates. With respect to the pathogenic genes, pgaB and bfmS were the most prevalent being present in 80.6% and 69.4% of the isolates, respectively. The antibiotic susceptibility testing revealed a diverse range of resistance patterns with high levels of intermediate resistance being observed for cefotaxime and ceftriaxone. The biofilm formation screening revealed that 48.6% and 44.4% of isolates formed strong biofilms at 37°C and 25°C, respectively. The phylogenetic clustering of the A. baumannii isolates resulted in the formation of 10 clusters at 60% similarity index, and the correlation matrix helped reveal important associations between genotypic and phenotypic traits. These results demonstrate the continued prevalence of A. baumannii within these environmental reservoirs and its ability to persist despite seasonal variations, prioritizing changes in environmental health policies that aim to reduce the widespread prevalence of these pathogens. © 2026 Rahman et al. This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.13 pagesen-UStrueAcinetobacter baumanniiAnti-bacterial agentsBangladeshBeta-LactamasesBiofilmsHumansMicrobial sensitivity testsPhylogenyWastewaterBeta lactamases.Drug resistance in microorganisms--Bangladesh.Water--Microbiology.Sewage--Microbiology.Isolation, molecular profiling, and antimicrobial sensitivity patterns of ESBL producing Acinetobacter baumannii in wastewater discharges from Goranchatbari sub-catchment area in DhakaArticle10.1371/journal.pone.0341652