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Keywords = pyolysin

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14 pages, 1331 KB  
Article
Characterization of Multidrug-Resistant Trueperella (Arcanobacterium) pyogenes Isolates from Vertebral Osteomyelitis in Slaughtered Pigs
by In-Haeng Lee, Gun Lee, Hyeon Jeong Moon, Dae-Young Kim, Jong-Woog Choi, Yeong-Bin Baek, Sang-Ik Park, Dae-Sung Yoo, Jun Bong Lee, Bock-Gie Jung, Kwang-Jun Lee and Jun-Gyu Park
Animals 2025, 15(20), 2970; https://doi.org/10.3390/ani15202970 - 14 Oct 2025
Viewed by 1549
Abstract
Slaughterhouses serve as critical surveillance hubs for identifying subclinical and economically important diseases in food-producing animals. Trueperella (Arcanobacterium) pyogenes, an opportunistic pathogen commonly found on the mucous membranes of livestock, is associated with mastitis, abortion, and suppurative infections such as abscesses. In [...] Read more.
Slaughterhouses serve as critical surveillance hubs for identifying subclinical and economically important diseases in food-producing animals. Trueperella (Arcanobacterium) pyogenes, an opportunistic pathogen commonly found on the mucous membranes of livestock, is associated with mastitis, abortion, and suppurative infections such as abscesses. In this study, we investigated 30 pig carcasses fully condemned due to vertebral osteomyelitis (VO) at two slaughterhouses in Gwangju, Republic of Korea, between November 2023 and May 2024. From abscess lesions, 11 T. pyogenes strains were isolated and characterized morphologically, biochemically, and genetically. The hemolytic exotoxin pyolysin (plo gene), a major virulence factor, was detected in five isolates (45.46%). Phylogenetic analysis of partial 16S rDNA sequences confirmed close clustering with known T. pyogenes reference strains. All 11 isolates exhibited multidrug resistance, showing resistance to 8–14 antimicrobial agents per strain. Complete resistance (11/11, 100%) was observed against amikacin (AMI), nalidixic acid (NAL), chloramphenicol (CHL), florfenicol (FFN), and trimethoprim/sulfamethoxazole (SXT). High resistance rates were also detected for erythromycin (ERY) and clindamycin (CLI) (10/11, 90.9%), ceftazidime (TAZ), ceftriaxone (AXO), ciprofloxacin (CIP) (7/11, 63.6%), and tetracycline (TET) and streptomycin (STR) (5/11, 45.5%), while gentamicin (GEN) resistance was found in three isolates (27.3%). In contrast, none of the isolates showed resistance to ampicillin, cefoxitin, or cefotaxime. These findings underscore the epidemiological value of abattoir-based monitoring in detecting emerging pathogens and tracking antimicrobial resistance. The results provide important baseline data to inform disease control strategies, guide antimicrobial stewardship, and support One Health approaches, including the development of preventive measures such as vaccines. Full article
(This article belongs to the Special Issue Slaughterhouses as Sources of Data for Animal Epidemiology)
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10 pages, 431 KB  
Communication
First Molecular Characterization of Trueperella pyogenes Isolated from a Rabbit Periodontal Abscess
by Magdalena Kizerwetter-Świda, Ewelina Kwiecień, Ilona Stefańska, Dorota Chrobak-Chmiel, Magdalena Rzewuska and Wojciech Bielecki
Vet. Sci. 2025, 12(6), 573; https://doi.org/10.3390/vetsci12060573 - 11 Jun 2025
Cited by 1 | Viewed by 1948
Abstract
Periodontal abscesses are a frequent health problem found in pet rabbits that could lead to severe complications, including life-threatening ones. Trueperella pyogenes is an opportunistic pathogen isolated from pyogenic infections in different animal species, mostly from farm animals such as ruminants and pigs. [...] Read more.
Periodontal abscesses are a frequent health problem found in pet rabbits that could lead to severe complications, including life-threatening ones. Trueperella pyogenes is an opportunistic pathogen isolated from pyogenic infections in different animal species, mostly from farm animals such as ruminants and pigs. This study presents the first case of isolation and molecular characterization of T. pyogenes from a periodontal abscess in a pet rabbit. A narrative review concerning the bacteriological aetiology of odontogenic abscesses in rabbits is also presented. The identification of T. pyogenes isolate was obtained based on the phenotypic properties and confirmed by molecular biology methods, i.e., the 16S rRNA gene sequencing and the presence of species-specific pyolysin gene. Furthermore, the pathogenic potential of the isolate was confirmed by the detection of six out of eight studied virulence genes. This report, along with the literature data, confirms that T. pyogenes may be one of the etiological agents of periodontal abscesses in rabbits. However, inadequate laboratory techniques may result in an underestimation of the occurrence of this bacterial species in rabbits. This study showed the need for standardization of the laboratory methods used for extended microbial culture for the clinical samples obtained from periodontal abscesses in rabbits. These procedures should also include the isolation of fastidious pathogens like T. pyogenes. Full article
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12 pages, 6017 KB  
Article
Revealing the Mechanism of NLRP3 Inflammatory Pathway Activation through K+ Efflux Induced by PLO via Signal Point Mutations
by Qiang Shan, Wenbo Ma, Bolin Li, Qian Li, Xue Wang, Yanan Li, Jiufeng Wang, Yaohong Zhu and Ning Liu
Int. J. Mol. Sci. 2024, 25(12), 6703; https://doi.org/10.3390/ijms25126703 - 18 Jun 2024
Cited by 6 | Viewed by 2192
Abstract
Trueperella pyogenes is an important opportunistic pathogenic bacterium widely distributed in the environment. Pyolysin (PLO) is a primary virulence factor of T. pyogenes and capable of lysing many different cells. PLO is a member of the cholesterol-dependent cytolysin (CDC) family of which the [...] Read more.
Trueperella pyogenes is an important opportunistic pathogenic bacterium widely distributed in the environment. Pyolysin (PLO) is a primary virulence factor of T. pyogenes and capable of lysing many different cells. PLO is a member of the cholesterol-dependent cytolysin (CDC) family of which the primary structure only presents a low level of homology with other members from 31% to 45%. By deeply studying PLO, we can understand the overall pathogenic mechanism of CDC family proteins. This study established a mouse muscle tissue model infected with recombinant PLO (rPLO) and its single-point mutations, rPLO N139K and rPLO F240A, and explored its mechanism of causing inflammatory damage. The inflammatory injury abilities of rPLO N139K and rPLO F240A are significantly reduced compared to rPLO. This study elaborated on the inflammatory mechanism of PLO by examining its unit point mutations in detail. Our data also provide a theoretical basis and practical significance for future research on toxins and bacteria. Full article
(This article belongs to the Section Biochemistry)
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28 pages, 4809 KB  
Article
Comparative Genome Analysis of 19 Trueperella pyogenes Strains Originating from Different Animal Species Reveal a Genetically Diverse Open Pan-Genome
by Zoozeal Thakur, Rajesh Kumar Vaid, Taruna Anand and Bhupendra Nath Tripathi
Antibiotics 2023, 12(1), 24; https://doi.org/10.3390/antibiotics12010024 - 24 Dec 2022
Cited by 11 | Viewed by 4687
Abstract
Trueperella pyogenes is a Gram-positive opportunistic pathogen that causes severe cases of mastitis, metritis, and pneumonia in a wide range of animals, resulting in significant economic losses. Although little is known about the virulence factors involved in the disease pathogenesis, a comprehensive comparative [...] Read more.
Trueperella pyogenes is a Gram-positive opportunistic pathogen that causes severe cases of mastitis, metritis, and pneumonia in a wide range of animals, resulting in significant economic losses. Although little is known about the virulence factors involved in the disease pathogenesis, a comprehensive comparative genome analysis of T. pyogenes genomes has not been performed till date. Hence, present investigation was carried out to characterize and compare 19 T. pyogenes genomes originating in different geographical origins including the draftgenome of the first Indian origin strain T. pyogenes Bu5. Additionally, candidate virulence determinants that could be crucial for their pathogenesis were also detected and analyzed by using various bioinformatics tools. The pan-genome calculations revealed an open pan-genome of T. pyogenes. In addition, an inventory of virulence related genes, 190 genomic islands, 31 prophage sequences, and 40 antibiotic resistance genes that could play a significant role in organism’s pathogenicity were detected. The core-genome based phylogeny of T. pyogenes demonstrates a polyphyletic, host-associated group with a high degree of genomic diversity. The identified core-genome can be further used for screening of drug and vaccine targets. The investigation has provided unique insights into pan-genome, virulome, mobiliome, and resistome of T. pyogenes genomes and laid the foundation for future investigations. Full article
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10 pages, 2976 KB  
Article
Heterologous Prime-Boost Immunization with DNA Vaccine and Modified Recombinant Proteins Enhances Immune Response against Trueperella pyogenes in Mice
by Ting Huang, Kelei Zhao, Xuhao Song, Tao Song, Xinrong Wang, Xiuyue Zhang, Bisong Yue and Yiwen Chu
Vaccines 2022, 10(6), 839; https://doi.org/10.3390/vaccines10060839 - 25 May 2022
Cited by 14 | Viewed by 2886
Abstract
Trueperella pyogenes (T. pyogenes) is a crucial opportunistic pathogen normally causing mastitis, abscesses and pneumonia in economically important ruminants. Although only one commercial vaccine of T. pyogenes is currently obtainable, its immunoprotective effect is limited. Pyolysin (PLO) is the most predominant [...] Read more.
Trueperella pyogenes (T. pyogenes) is a crucial opportunistic pathogen normally causing mastitis, abscesses and pneumonia in economically important ruminants. Although only one commercial vaccine of T. pyogenes is currently obtainable, its immunoprotective effect is limited. Pyolysin (PLO) is the most predominant virulence factor highly expressed in T. pyogenes and is an excellent target for the development of novel vaccines against T. pyogenes. In this study, we designed a heterologous prime-boost vaccination scheme combining a DNA vaccine pVAX1-PLO and a subunit vaccine His-PLO to maximize host responses in mice. Humoral and cellular immune responses and protective effects were evaluated in mice to compare the immunogenicity induced by different immunization schemes. Compared to the PBS-control group, in vivo immunization results showed that better immune responses of mice immunized with the pVAX1-PLO plasmids and His-PLO proteins were induced. The residual bacterial burdens from the liver and peritoneal fluid were remarkably decreased in the immunized mice compared with the PBS group. Notably, the heterologous prime-boost vaccination groups significantly enhanced host humoral and cellular immune responses and protected mice from different virulent T. pyogenes strains infection. Conclusively, this study provides a favorable strategy for the further development of next-generation vaccines against T. pyogenes infections. Full article
(This article belongs to the Section Vaccines Against Tropical and Other Infectious Diseases)
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14 pages, 2117 KB  
Communication
Evaluation of the Potency of Two Pyolysin-Derived Recombinant Proteins as Vaccine Candidates of Trueperella Pyogenes in a Mouse Model: Pyolysin Oligomerization and Structural Change Affect the Efficacy of Pyolysin-Based Vaccines
by Lingxiao Yang, Hongmin Liang, Bing Wang, Bo Ma, Junwei Wang and Wenlong Zhang
Vaccines 2020, 8(1), 79; https://doi.org/10.3390/vaccines8010079 - 10 Feb 2020
Cited by 17 | Viewed by 4062
Abstract
Trueperella pyogenes (T. pyogenes) is an important opportunistic pathogen in livestock and wild animals. However, only one commercial T. pyogenes vaccine is currently available, and its immunoprotective effect is not ideal. Pyolysin (PLO) is one of the important virulence factors expressed [...] Read more.
Trueperella pyogenes (T. pyogenes) is an important opportunistic pathogen in livestock and wild animals. However, only one commercial T. pyogenes vaccine is currently available, and its immunoprotective effect is not ideal. Pyolysin (PLO) is one of the important virulence factors expressed by T. pyogenes and one of the targets for the development of new T. pyogenes vaccines. In this study, we constructed two recombinant antigens, tPLOA1 (contains amino acids 1–110 and domain 4 of the PLO molecule) and tPLOA2 (contains amino acids 190–296 and domain 4 of the PLO molecule). Vaccines were prepared by mixing the two recombinant antigens with incomplete Freund’s adjuvant or sheep red blood cell membrane and provided partial immune protection to immunized mice against the lethal challenge of T. pyogenes. Analysis of the PLO-specific IgG levels of immunized mice indicated that the antibody-inducing potency and immunoprotective efficacy of PLO-based vaccines are affected by the oligomerization and structural changes of PLO after binding to a cholesterol-containing membrane. In addition, the titer of anti-hemolysis antibodies is not a suitable indicator of the immunoprotective effect of these vaccines in PLO-based vaccine-immunized animals. The results provide new insights into the development of T. pyogenes vaccines. Full article
(This article belongs to the Section Veterinary Vaccines)
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33 pages, 988 KB  
Review
Pathogenicity and Virulence of Trueperella pyogenes: A Review
by Magdalena Rzewuska, Ewelina Kwiecień, Dorota Chrobak-Chmiel, Magdalena Kizerwetter-Świda, Ilona Stefańska and Małgorzata Gieryńska
Int. J. Mol. Sci. 2019, 20(11), 2737; https://doi.org/10.3390/ijms20112737 - 4 Jun 2019
Cited by 187 | Viewed by 17198
Abstract
Bacteria from the species Trueperella pyogenes are a part of the biota of skin and mucous membranes of the upper respiratory, gastrointestinal, or urogenital tracts of animals, but also, opportunistic pathogens. T. pyogenes causes a variety of purulent infections, such as metritis, mastitis, [...] Read more.
Bacteria from the species Trueperella pyogenes are a part of the biota of skin and mucous membranes of the upper respiratory, gastrointestinal, or urogenital tracts of animals, but also, opportunistic pathogens. T. pyogenes causes a variety of purulent infections, such as metritis, mastitis, pneumonia, and abscesses, which, in livestock breeding, generate significant economic losses. Although this species has been known for a long time, many questions concerning the mechanisms of infection pathogenesis, as well as reservoirs and routes of transmission of bacteria, remain poorly understood. Pyolysin is a major known virulence factor of T. pyogenes that belongs to the family of cholesterol-dependent cytolysins. Its cytolytic activity is associated with transmembrane pore formation. Other putative virulence factors, including neuraminidases, extracellular matrix-binding proteins, fimbriae, and biofilm formation ability, contribute to the adhesion and colonization of the host tissues. However, data about the pathogen–host interactions that may be involved in the development of T. pyogenes infection are still limited. The aim of this review is to present the current knowledge about the pathogenic potential and virulence of T. pyogenes. Full article
(This article belongs to the Special Issue Microbial Virulence Factors)
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