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1.
Anaerobe ; 85: 102817, 2024 Feb.
Article in English | MEDLINE | ID: mdl-38163631

ABSTRACT

OBJECTIVES: This study aimed to produce and purify Clostridium perfringens type C beta-toxin, sheep anti-beta toxin immunoglobulin G (IgG) and chicken immunoglobulin Y (IgY). METHODS: Two methods were used for beta-toxin purification: single-step metal affinity chromatography (MAC) using zinc as a chelator and ion exchange chromatography (IEX). The purified and inactivated beta-toxoids were then administered to sheep and chickens in order to produce IgG and IgY. RESULTS: All assays using the IEX failed. In contrast, MAC purified more than 21 mg of toxin per run in a single-step protocol. The purified and inactivated beta-toxoids were then administered to sheep and chickens, and IgG and IgY were purified with a high yield, medium antibody titer of 50 IU/mL, and high avidity (73.2 %). CONCLUSIONS: C. perfringens type C beta-toxin and sheep or chicken anti-beta toxin IgG and IgY antibodies were successfully produced and purified using a simple protocol. This protocol can be used for the production of components used in the diagnosis and research of necrotic enteritis caused by C. perfringens type C, as well as for the evaluation of existing vaccines and the development of new preventive methods against this disease.


Subject(s)
Antitoxins , Clostridium Infections , Enteritis , Immunoglobulins , Poultry Diseases , Animals , Sheep , Clostridium perfringens , Clostridium Infections/veterinary , Enteritis/veterinary , Chickens , Toxoids , Immunoglobulin G , Poultry Diseases/prevention & control
2.
Anaerobe ; 72: 102465, 2021 Dec.
Article in English | MEDLINE | ID: mdl-34662696

ABSTRACT

Herd vaccination is an important preventive measure against enterotoxemia in ruminants. Vaccination in goats should be performed every four months, and recent studies have shown that immunity in cattle lasts for less than one year. One of the mechanisms for increasing the duration of the immune response is to use purified toxoids as immunogens. The aim of the present study was to evaluate the humoral response in cattle and goats after vaccination with purified and semi-purified Clostridium perfringens type D epsilon toxoid. The following three different vaccines were used: vaccine 1 (V1), a semi-purified toxoid adsorbed to aluminum hydroxide; vaccine 2 (V2), a purified toxoid adsorbed to aluminum hydroxide; and vaccine (V3), a purified toxoid adsorbed on chitosan microparticles. Groups of cattle (n = 6-7) and goats (n = 6-7) were vaccinated on days 0 and 30, and serum samples for antitoxin titration were collected every 30 days for one-year post-vaccination. Goats were revaccinated on day 360, and their serum was evaluated on days 367 and 374. The antibody peaks ranged between 6.90 and 11.47 IU/mL in cattle and from 1.11 to 4.40 IU/mL in goats. In cattle administered with the V1 and V2 vaccines, we observed that the antibody titers were maintained above 0.2 IU/mL until the end of the experiment. In goats, V2 elicited long-lasting antibodies, and all animals maintained the protective titers for 210 days after the first dose. In conclusion, the purified toxoid vaccine with aluminum hydroxide adjuvant was able to induce strong and long-lasting humoral responses in both species and could be an alternative for improving the immunization schedule against enterotoxemia in goats and cattle.


Subject(s)
Bacterial Toxins/immunology , Cattle Diseases/immunology , Cattle Diseases/microbiology , Clostridium Infections/veterinary , Clostridium perfringens/immunology , Goat Diseases/microbiology , Goat Diseases/prevention & control , Toxoids/administration & dosage , Animals , Antibodies, Bacterial/blood , Antibodies, Bacterial/immunology , Bacterial Toxins/administration & dosage , Bacterial Toxins/chemistry , Bacterial Vaccines/administration & dosage , Bacterial Vaccines/chemistry , Bacterial Vaccines/immunology , Cattle , Clostridium perfringens/classification , Enterotoxemia/prevention & control , Goats , Immunity, Humoral , Immunization , Rabbits
3.
Anaerobe ; 56: 34-39, 2019 Apr.
Article in English | MEDLINE | ID: mdl-30703440

ABSTRACT

The molecular epidemiology of 38 non-duplicate toxigenic Clostridioides (previously Clostridium) difficile isolates from inpatients from a hospital in Brazil during a 6-year period (2012-2017) were investigated by multilocus sequence typing (MLST) and ribotyping. These isolates were classified into 20 sequence types (ST), six (30%) of which were novel, revealing a high diversity in a single hospital. Classic hypervirulent strains ST1/RT027 and ST11/RT078 were not identified, while ST42 (almost all RT106) was the most common type, being detected in 11 (28.9%) strains. Noteworthy, six (15.8%) isolates were classified into five STs from clade 2, four of which were new ST and RT. Our study suggests that possible hypervirulent strains other than ST1/RT027 might be inadvertently circulating in Brazilian hospitals and highlights the importance of permanent surveillance on circulating strains in a national scale.


Subject(s)
Clostridioides difficile/classification , Clostridioides difficile/isolation & purification , Clostridium Infections/epidemiology , Clostridium Infections/microbiology , Genotype , Brazil/epidemiology , Clostridioides difficile/genetics , Hospitals, University , Inpatients , Molecular Epidemiology , Multilocus Sequence Typing , Ribotyping
4.
Anaerobe ; 51: 50-53, 2018 Jun.
Article in English | MEDLINE | ID: mdl-29621604

ABSTRACT

Five dogs with chronic-recurring diarrhea were positive for Clostridioides difficile infection (CDI), but were unresponsive to treatment with metronidazole. One of these animals was subjected to a colonoscopy, which revealed eosinophilic infiltration of the colon. All five animals completely recovered after dietary changes. The present work suggests that CDI might occur in dogs with other intestinal alterations. In addition, this report suggests that dysbiosis should be considered in animals that have chronic-recurring diarrhea and test positive for C. difficile.


Subject(s)
Chronic Disease/veterinary , Clostridioides difficile/isolation & purification , Clostridium Infections/veterinary , Diarrhea/veterinary , Dog Diseases/epidemiology , Dog Diseases/microbiology , Animals , Anti-Infective Agents/administration & dosage , Chronic Disease/epidemiology , Chronic Disease/therapy , Clostridium Infections/epidemiology , Clostridium Infections/microbiology , Clostridium Infections/therapy , Colon/pathology , Colonoscopy , Diarrhea/epidemiology , Diarrhea/microbiology , Diarrhea/therapy , Diet Therapy , Dog Diseases/therapy , Dogs , Metronidazole/administration & dosage , Treatment Outcome
5.
Vet Microbiol ; 199: 1-7, 2017 Feb.
Article in English | MEDLINE | ID: mdl-28110774

ABSTRACT

Clostridium chauvoei is the etiological agent of blackleg, a severe disease of domestic ruminants, causing myonecrosis and serious toxemia with high mortality. Despite the known importance of this agent, studies evaluating its pathogenesis of blackleg are scarce, and many are based on an unproven hypothesis that states that macrophages are responsible for carrying C. chauvoei spores from the intestines to muscles in the early stages of blackleg. Therefore, the present study aimed to investigate the survival of C. chauvoei vegetative cells or spores after phagocytosis by a murine macrophage cell line (RAW 264.7) and bovine monocyte-derived macrophages and to profile inflammatory and anti-inflammatory cytokine transcripts of bovine macrophages infected with C. chauvoei vegetative cells or spores. Both vegetative cells and spores of C. chauvoei remain viable after internalization by murine and bovine macrophages. Bovine macrophages infected with vegetative cells showed a pro-inflammatory profile, while those infected with spores displayed an anti-inflammatory profile. Together, these results corroborate the classical hypothesis that macrophages may play a role in the early pathogenesis of blackleg. Moreover, this is the first study to evaluate the infection kinetics and cytokine profile of bovine monocyte-derived macrophages infected with a Clostridium species.


Subject(s)
Cattle Diseases/microbiology , Clostridium Infections/veterinary , Clostridium chauvoei/physiology , Macrophages/microbiology , Microbial Viability , Animals , Cattle , Cell Line , Cells, Cultured , Clostridium Infections/microbiology , In Vitro Techniques , Mice , Phagocytosis , Spores, Bacterial/physiology
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