1.Airborne bacterial profiling and air disinfection efficacy in small animal hospitals in South Korea
Dongryeoul BAE ; Yuseung KIM ; Kwang-Young SONG ; Jung-Hee KWON ; Jungwhan CHON
Journal of Veterinary Science 2026;27(1):e2-
Objective:
To evaluate the efficacy of a high-pressure spray disinfection system using neutral electrolyzed water to reduce airborne bacterial concentrations in veterinary hospitals and to characterize clinically relevant airborne pathogens and antimicrobial resistance.
Methods:
Active air sampling was performed before and after disinfection in multiple room types across five small animal hospitals in South Korea. Total airborne bacterial concentrations were quantified as colony-forming units per cubic meter. Representative colonies were identified by matrix-assisted laser desorption/ionization time-of-flight mass spectrometry, with confirmatory sequencing for selected isolates. Susceptibility testing was performed for Enterococcus faecium, Staphylococcus aureus, Klebsiella pneumoniae, Acinetobacter baumannii, Pseudomonas aeruginosa, and Enterobacter species using disk diffusion.
Results:
Mean airborne bacterial concentrations decreased from 358.2 to 150.6 colony-forming units per cubic meter (58% reduction; p < 0.05). Waiting rooms showed the highest predisinfection concentrations, and operating rooms the lowest. Among 848 isolates, Micrococcus luteus, staphylococci, and Bacillus species were most frequent. Eight isolates were clinically important pathogens; two met multidrug resistance criteria. No targeted pathogens were detected after disinfection.
Conclusions
and Relevance: High-pressure neutral electrolyzed water spraying significantly reduced airborne bacterial loads in veterinary clinical environments, supporting routine air disinfection and microbial surveillance as components of infection prevention programs.
2.Effectiveness of calcium hypochlorite, quaternary ammonium compounds, and sodium hypochlorite in eliminating vegetative cells and spores of Bacillus anthracis surrogate
Jin-Hyeok YIM ; Kwang-Young SONG ; Hyunsook KIM ; Dongryeoul BAE ; Jung-Whan CHON ; Kun-Ho SEO
Journal of Veterinary Science 2021;22(1):e11-
Background:
The spore-forming bacterium Bacillus anthracis causes anthrax, an often-fatal infection in animals. Therefore, a rapid and reliable strategy to decontaminate areas, humans, and livestock from B. anthracis is very critical.
Objectives:
The aim of this study was performed to evaluate the efficacy of sodium hypochlorite, calcium hypochlorite, and quaternary ammonium compound (QAC) sanitizers, which are commonly used in the food industry, to inhibit spores and vegetative cells of B.anthracis surrogate.
Methods:
We evaluated the efficacy of sodium hypochlorite, calcium hypochlorite, and a QAC in inhibiting vegetative cells and spores of a B. anthracis surrogate. We treated a 0.1-mL vegetative cell culture or spore solution with 10 mL sanitizer. The samples were serially diluted and cultured.
Results:
We found that 50 ppm sodium hypochlorite (pH 7), 1 ppm calcium hypochlorite, and 1 ppm QAC completely eliminated the cells in vegetative state. Exposure to 3,000 ppm sodium hypochlorite (pH 7) and 300 ppm calcium hypochlorite significantly eliminated the bacterial spores; however, 50,000 ppm QAC could not eliminate all spores.
Conclusions
Calcium hypochlorite and QAC showed better performance than sodium hypochlorite in completely eliminating vegetative cells of B. anthracis surrogate. QAC was ineffective against spores of the B. anthracis surrogate. Among the three commercial disinfectants tested, calcium hypochlorite most effectively eliminated both B. anthracis vegetative cells and spores.
3.Prevalence, toxin gene profile, antibiotic resistance, and molecular characterization of Clostridium perfringens from diarrheic and non-diarrheic dogs in Korea
Jung Whan CHON ; Kun Ho SEO ; Dongryeoul BAE ; Ji Hee PARK ; Saeed KHAN ; Kidon SUNG
Journal of Veterinary Science 2018;19(3):368-374
Clostridium perfringens causes diarrhea and other diseases in animals and humans. We investigated the prevalence, toxin gene profiles, and antibiotic resistance of C. perfringens isolated from diarrheic dogs (DD) and non-diarrheic dogs (ND) in two animal hospitals in Seoul, Korea. Fecal samples were collected from clinically DD (n = 49) and ND (n = 34). C. perfringens was isolated from 31 of 49 DD (63.3%) and 21 of 34 ND dogs (61.8%). All C. perfringens strains were positive for the α toxin gene, but not for the β, ε, or ι toxin genes; therefore, all strains were identified as type A C. perfringens. All isolates were cpe-negative, whereas the β2 toxin gene was identified in 83.9% and 61.9% of isolates from DD and ND, respectively. Most isolates were susceptible to ampicillin (94%), chloramphenicol (92%), metronidazole (100%), moxifloxacin (96%), and imipenem (100%). However, 25.0% and 21.2% of isolates were resistant to tetracycline and clindamycin, respectively. Molecular subtyping of the isolated strains was performed by using pulsed-field gel electrophoresis. Fifty-two isolates were classified into 48 pulsotypes based on more than 90% similarity of banding patterns. No notable differences were observed among the isolates from DD and ND.
Ampicillin
;
Animals
;
Bacterial Toxins
;
Chloramphenicol
;
Clindamycin
;
Clostridium perfringens
;
Clostridium
;
Diarrhea
;
Dogs
;
Drug Resistance
;
Drug Resistance, Microbial
;
Electrophoresis, Gel, Pulsed-Field
;
Hospitals, Animal
;
Humans
;
Imipenem
;
Korea
;
Metronidazole
;
Prevalence
;
Seoul
;
Tetracycline

Result Analysis
Print
Save
E-mail