Molecular epidemiology and comparative virulence patterns of Acinetobacter baumannii isolates from war-related injuries in Ukraine
(2025) In Immunobiology- Abstract
- Abstract
Background:
Multidrug-resistant Acinetobacter baumannii remains as a global concern with its ability to adhere, disperse and sustain on areas involving suboptimal infection control measures, especially war zones. We aimed to evaluate the molecular epidemiology and virulence factors of A. baumannii isolates from conflict zone in Ukraine.
Methods:
In 2022, 46 A. baumannii wound isolates were received from war-related injuries in Ukraine. Antimicrobial susceptibility testing and whole genome sequencing were performed to all isolates (n=46). The resistome, virulome, K- and O-types of isolates were detected using VFDB and Kaptive 2.0, respectively. Virulence traits of the isolates were tested in vitro and in vivo by... (More) - Abstract
Background:
Multidrug-resistant Acinetobacter baumannii remains as a global concern with its ability to adhere, disperse and sustain on areas involving suboptimal infection control measures, especially war zones. We aimed to evaluate the molecular epidemiology and virulence factors of A. baumannii isolates from conflict zone in Ukraine.
Methods:
In 2022, 46 A. baumannii wound isolates were received from war-related injuries in Ukraine. Antimicrobial susceptibility testing and whole genome sequencing were performed to all isolates (n=46). The resistome, virulome, K- and O-types of isolates were detected using VFDB and Kaptive 2.0, respectively. Virulence traits of the isolates were tested in vitro and in vivo by phenotypic assays; capsule abundance, serum survival, biofilm formation, Galleria mellonella infection and mouse pneumonia.
Results:
Five out of 46 (10.8%) isolates tested extensively drug resistant (XDR) and 84.78% of the isolates tested multidrug-resistant (MDR). Distance matrix analysis based on SNPs generated 5 main clusters of 46 isolates. Dominating sequence types of the isolates were ST2 (19%), ST19 (19%), ST400 (19%) and ST78 (19%). Comparative assessment of virulence profiling revealed that, KL235 and K91 are highly encapsulated K types and are found in ST2 and ST19 isolates. Virulome analysis revealed missing T66S encoding genes, Omp33-36 and biofilm production related genes (bap, blp1) in ST19 isolates. High level of encapsulation was observed in ST19 isolates followed by lower serum survival compared to the rest of the study cohort. ST19 isolates expressed a higher survival and virulence score at 24 h in mice and G. mellonella viability assay, respectively. However, prolonged infection up to 120 h in G. mellonella larvae and 72 h in mice showed that ST19 isolates have lower ability to kill larvae followed by clearance in lung and BAL fluid while ST2 isolates managed to persist the infection and lethality (p=0.0001).
Conclusion:
Although A. baumannii is known for its strain specific behavioral pattern in terms of virulence, our study revealed that STs act parallel on genotypic and phenotypic basis. Instability and absence of TS66, OMP-33/36 and biofilm encoding genes and its effect on encapsulation should be studied further for possible antivirulent and immunization therapies.
(Less)
Please use this url to cite or link to this publication:
https://lup.lub.lu.se/record/10b8b86b-fff4-4e4f-aa8c-0c1be9d11827
- author
- Boral, Jale
LU
; Tellapragada, Chaitanya
; Thofte, Oskar
LU
; Öhnström, Valdemar
LU
; Magda, Michal
LU
; Matuschek, Erika
; Nazarchuk, Oleksandr
; Giske, Christian G.
; Blom, Anna
LU
and Riesbeck, Kristian
LU
- organization
- publishing date
- 2025-07
- type
- Contribution to journal
- publication status
- published
- subject
- in
- Immunobiology
- article number
- 152926
- publisher
- Elsevier
- ISSN
- 1878-3279
- DOI
- 10.1016/j.imbio.2025.152926
- language
- English
- LU publication?
- yes
- id
- 10b8b86b-fff4-4e4f-aa8c-0c1be9d11827
- date added to LUP
- 2026-08-26 14:26:50
- date last changed
- 2026-08-27 09:16:42
@misc{10b8b86b-fff4-4e4f-aa8c-0c1be9d11827,
abstract = {{Abstract<br/>Background:<br/>Multidrug-resistant Acinetobacter baumannii remains as a global concern with its ability to adhere, disperse and sustain on areas involving suboptimal infection control measures, especially war zones. We aimed to evaluate the molecular epidemiology and virulence factors of A. baumannii isolates from conflict zone in Ukraine.<br/>Methods:<br/>In 2022, 46 A. baumannii wound isolates were received from war-related injuries in Ukraine. Antimicrobial susceptibility testing and whole genome sequencing were performed to all isolates (n=46). The resistome, virulome, K- and O-types of isolates were detected using VFDB and Kaptive 2.0, respectively. Virulence traits of the isolates were tested in vitro and in vivo by phenotypic assays; capsule abundance, serum survival, biofilm formation, Galleria mellonella infection and mouse pneumonia.<br/>Results:<br/>Five out of 46 (10.8%) isolates tested extensively drug resistant (XDR) and 84.78% of the isolates tested multidrug-resistant (MDR). Distance matrix analysis based on SNPs generated 5 main clusters of 46 isolates. Dominating sequence types of the isolates were ST2 (19%), ST19 (19%), ST400 (19%) and ST78 (19%). Comparative assessment of virulence profiling revealed that, KL235 and K91 are highly encapsulated K types and are found in ST2 and ST19 isolates. Virulome analysis revealed missing T66S encoding genes, Omp33-36 and biofilm production related genes (bap, blp1) in ST19 isolates. High level of encapsulation was observed in ST19 isolates followed by lower serum survival compared to the rest of the study cohort. ST19 isolates expressed a higher survival and virulence score at 24 h in mice and G. mellonella viability assay, respectively. However, prolonged infection up to 120 h in G. mellonella larvae and 72 h in mice showed that ST19 isolates have lower ability to kill larvae followed by clearance in lung and BAL fluid while ST2 isolates managed to persist the infection and lethality (p=0.0001).<br/>Conclusion:<br/>Although A. baumannii is known for its strain specific behavioral pattern in terms of virulence, our study revealed that STs act parallel on genotypic and phenotypic basis. Instability and absence of TS66, OMP-33/36 and biofilm encoding genes and its effect on encapsulation should be studied further for possible antivirulent and immunization therapies.<br/>}},
author = {{Boral, Jale and Tellapragada, Chaitanya and Thofte, Oskar and Öhnström, Valdemar and Magda, Michal and Matuschek, Erika and Nazarchuk, Oleksandr and Giske, Christian G. and Blom, Anna and Riesbeck, Kristian}},
issn = {{1878-3279}},
language = {{eng}},
note = {{Conference Abstract}},
publisher = {{Elsevier}},
series = {{Immunobiology}},
title = {{Molecular epidemiology and comparative virulence patterns of <i>Acinetobacter baumannii</i> isolates from war-related injuries in Ukraine}},
url = {{http://dx.doi.org/10.1016/j.imbio.2025.152926}},
doi = {{10.1016/j.imbio.2025.152926}},
year = {{2025}},
}