Please use this identifier to cite or link to this item: http://repository.i3l.ac.id/jspui/handle/123456789/1512
Title: Isolation and Characterization of Environmental Bacteriophages against Carbapenem-resistant Escherichia coli from Hospitalized Patients in King Chulalongkorn Memorial Hospital in Thailand
Authors: Alfitri, Muthia
Keywords: Bacteriophage
Carbapenem-resistant E.coli
Wastewater
Host range
Phage stability
Issue Date: 10-Aug-2026
Publisher: i3L Press
Series/Report no.: T202608012;BM26-012
Abstract: The increasing prevalence of carbapenem-resistant Escherichia coli has highlighted the need for alternative antibacterial strategies. This study aimed to isolate and characterize environmental bacteriophages active against carbapenem-resistant E. coli using wastewater samples collected from various locations in Bangkok, Thailand. Using carbapenem-resistant E. coli clinical isolates obtained from King Chulalongkorn Memorial Hospital as host bacteria, a total of 28 bacteriophages were successfully isolated and propagated, yielding titers ranging from 3.6 × 104 to 1.22 × 1013 PFU/mL. Host range analysis against 52 E. coli isolates revealed varying infectivity profiles, with phage 003/5 exhibiting the broadest host range (42.31%), followed by phages 003/2 (36.54%) and 055/3 (28.85%). Six phages demonstrating the broadest host ranges were further characterized through pH, temperature, and chloroform stability assays. Overall, the selected phages remained stable across pH 4–12 and temperatures ranging from 4°C to 60°C. Chloroform treatment produced variable responses among the tested phages, with most phages maintaining infectivity across the tested concentrations, while phage 104/5 exhibited a marked reduction in titer at higher chloroform concentrations. These findings demonstrate that tropical wastewater environments in Thailand serve as valuable reservoirs of diverse bacteriophages with activity against carbapenem-resistant E. coli. The isolated phages exhibited promising host range and stability characteristics, supporting their potential for further investigation as candidates for phage-based antibacterial applications.
URI: http://repository.i3l.ac.id/jspui/handle/123456789/1512
Appears in Collections:Biomedicine

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