1.Longitudinal analysis of serotypes, virulence factors, and MLST profiles of Pasteurella multocida from porcine pneumonia in South Korea (2016–2023)
Sung-Hyun MOON ; Da-Yun BAE ; Taeyeon KIM ; Won-Il KIM ; Yeonsu OH ; Ho-Seong CHO
Journal of Veterinary Science 2026;27(1):e9-
Objective:
This study performed a longitudinal molecular characterization of P. multocidaisolates from pigs with respiratory lesions in South Korea (2016–2023), including subspecies identification, capsular serogrouping, virulence gene profiling, and multilocus sequence typing (MLST).
Methods:
A total of 1,358 pneumonic lung samples were collected from 960 pig farms between 2016 and 2023, yielding 169 P. multocida isolates. Subspecies were assigned by 16S rRNA gene sequencing. Capsular serogroups were determined using multiplex Virulence genes (pfhA, hgbB, tbpA, and toxA) were detected by PCR assays. MLST was conducted using the RIRDC scheme, and phylogenetic analysis of concatenated loci assessed clonal relationships.
Results:
Serogroup A predominated (109/169, 64.5%), followed by D (47/169, 27.8%) and B (3/169, 1.8%). Serogroups F and A/D were each detected once (0.6%), and 8 isolates were untypable (4.7%). Co-detection of hgbB and pfhA occurred in multiple isolates. Notably, two serogroup B isolates carried both genes, representing the first such finding in Korea and suggesting enhanced virulence potential. MLST identified 5 clonal complexes and 15 sequence types, including ST9 linked to serogroup B.
Conclusions
and Relevance: The emergence of serogroup B/ST9 isolates co-harboring hgbB and pfhA highlights evolving virulence patterns in Korean swine and supports continued molecular and genomic surveillance to guide control strategies and reduce health risks.
2.Actinobacillus pleuropneumoniaein Korea (2015-2025): serovar distribution, toxin gene profiles, antimicrobial resistance, and identification of an apxIICA-deficient serovar 15 profile
Da-Yun BAE ; Eun Ju KANG ; Yun-Chae CHO ; Yujoon LIM ; Sung-Hyun MOON ; Won-Il KIM ; Yeonsu OH ; Ho-Seong CHO
Journal of Veterinary Science 2026;27(3):e39-
Objective:
To provide a decade-long molecular and phenotypic characterization of APP isolates from Korean pig farms, focusing on the serovar distribution, apx-based toxingene profiles, and antimicrobial susceptibility.
Methods:
Between 2015 and 2025, 1,215 pneumonic lung samples from 965 pig farms yielded 132 APP isolates. The species identity was confirmed by 16S rRNA sequencing. The serovars were determined using capsule polysaccharide (CPS) gene-based multiplex polymerase chain reaction (PCR). Toxin genes (apxIA–apxIVA) were profiled, and the antimicrobial susceptibility to 29 agents was assessed by broth microdilution according to the Clinical and Laboratory Standards Institute guidelines.
Results:
Serovar 1 was predominant (66.7%), followed by serovars 5 (17.4%) and 2 (6.8%).CPS multiplex PCR identified three isolates (2.3%) as serovar 15, which displayed heterogeneous toxin gene profiles, including apxIICA-deficient profiles. Most isolates exhibited classical repeats-in-toxin operon arrangements, suggesting ongoing diversification of toxin gene profiles. High resistance rates were observed for oxytetracycline (90.9%) and florfenicol (50.8%), and recurrent multidrug-resistant combinations were frequently detected.
Conclusions
and Relevance: Serovar 1 is dominant in Korea, but the emergence of atypical toxin gene profiles in serovar 15 may carry immunological implications. Persistent resistance to older drug classes underscores the necessity for long-term molecular surveillance, evaluation of vaccine coverage against evolving strains, and enhanced antimicrobial stewardship to strengthen the control efforts for porcine pleuropneumonia in Korea.
3.Establishment of hydrochloric acid/lipopolysaccharide-induced pelvic inflammatory disease model.
Yeonsu OH ; Jaehun LEE ; Hyeon Cheol KIM ; Tae Wook HAHN ; Byung Il YOON ; Jeong Hee HAN ; Yong Soo KWON ; Joung Jun PARK ; Deog Bon KOO ; Ki Jong RHEE ; Bae Dong JUNG
Journal of Veterinary Science 2016;17(3):413-419
Pelvic inflammatory disease (PID), which is one of the most problematic complications experienced by women with sexually transmitted diseases, frequently causes secondary infections after reproductive abnormalities in veterinary animals. Although the uterus is self-protective, it becomes fragile during periods or pregnancy. To investigate PID, bacteria or lipopolysaccharide (LPS) extracted from gram negative bacteria has been used to induce the disease in several animal models. However, when LPS is applied to the peritoneum, it often causes systemic sepsis leading to death and the PID was not consistently demonstrated. Hydrochloric acid (HCl) has been used to induce inflammation in the lungs and stomach but not tested for reproductive organs. In this study, we developed a PID model in mice by HCl and LPS sequential intracervical (i.c.) administration. The proinflammatory cytokines, interleukin (IL)-1β, IL-6 and tumor necrosis factor-α, were detected in the mouse uterus by western blot analysis and cytokine enzyme-linked immunosorbent assay after HCl (25 mg/kg) administration i.c. followed by four LPS (50 mg/kg) treatments. Moreover, mice exhibited increased infiltration of neutrophils in the endometrium and epithelial layer. These results suggest that ic co-administration of HCl and LPS induces PID in mice. This new model may provide a consistent and reproducible PID model for future research.
Animals
;
Bacteria
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Blotting, Western
;
Coinfection
;
Cytokines
;
Endometrium
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Enzyme-Linked Immunosorbent Assay
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Female
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Gram-Negative Bacteria
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Humans
;
Hydrochloric Acid
;
Inflammation
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Interleukin-6
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Interleukins
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Lung
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Mice
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Models, Animal
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Necrosis
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Neutrophils
;
Pelvic Inflammatory Disease*
;
Peritoneum
;
Pregnancy
;
Sepsis
;
Sexually Transmitted Diseases
;
Stomach
;
Uterus

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