Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Comparative protection of small ruminants against Mannheimia haemolytica infection by inactivated bacterin and toxoid vaccines

View through CrossRef
Background and Aim: Mannheimia haemolytica causes respiratory infection and mortality in sheep and goats, similar to the effects in cattle, which causes major economic damage. Regular vaccinations alongside good management practices remain the most efficient tools for controlling this disease. Indeed, vaccines against pasteurellosis are available, but results on their efficacy have varied. Therefore, this study aimed to evaluate the efficacy of three vaccines against mannheimiosis in small ruminants. Materials and Methods: We evaluated three vaccines developed from a local field isolate based on the inactivated bacterium, its toxoid, and a mixture of bacterin/toxoid, which we then tested on sheep and goats. Selected criteria that were evaluated were safety, antibody response, and protection through a challenge. Post-vaccination monitoring was carried out by enzyme-linked immunosorbent assay. The evaluation was based on antibody responses to vaccination in sheep and goats for both bacteria and leukotoxin. Protection was assessed by clinical and lesion scores after the challenge of vaccinated goats with a pathogenic strain. Results: The three tested vaccines were completely safe, did not cause any adverse reactions, and induced significant antibody titers in immunized animals. Following M. haemolytica challenge, unvaccinated goats showed clinical signs with lesions typical of the disease. Meanwhile, the best protection was obtained with the inactivated combined bacterin/toxoid vaccine. Conclusion: This study highlighted the effectiveness of adding a bacterial toxoid in the vaccine as a promising solution for preventing mannheimiosis in small ruminants. Because of the worldwide distribution of M. haemolytica infection, general prophylaxis based on a combined inactivated vaccine could greatly benefit.
Title: Comparative protection of small ruminants against Mannheimia haemolytica infection by inactivated bacterin and toxoid vaccines
Description:
Background and Aim: Mannheimia haemolytica causes respiratory infection and mortality in sheep and goats, similar to the effects in cattle, which causes major economic damage.
Regular vaccinations alongside good management practices remain the most efficient tools for controlling this disease.
Indeed, vaccines against pasteurellosis are available, but results on their efficacy have varied.
Therefore, this study aimed to evaluate the efficacy of three vaccines against mannheimiosis in small ruminants.
Materials and Methods: We evaluated three vaccines developed from a local field isolate based on the inactivated bacterium, its toxoid, and a mixture of bacterin/toxoid, which we then tested on sheep and goats.
Selected criteria that were evaluated were safety, antibody response, and protection through a challenge.
Post-vaccination monitoring was carried out by enzyme-linked immunosorbent assay.
The evaluation was based on antibody responses to vaccination in sheep and goats for both bacteria and leukotoxin.
Protection was assessed by clinical and lesion scores after the challenge of vaccinated goats with a pathogenic strain.
Results: The three tested vaccines were completely safe, did not cause any adverse reactions, and induced significant antibody titers in immunized animals.
Following M.
haemolytica challenge, unvaccinated goats showed clinical signs with lesions typical of the disease.
Meanwhile, the best protection was obtained with the inactivated combined bacterin/toxoid vaccine.
Conclusion: This study highlighted the effectiveness of adding a bacterial toxoid in the vaccine as a promising solution for preventing mannheimiosis in small ruminants.
Because of the worldwide distribution of M.
haemolytica infection, general prophylaxis based on a combined inactivated vaccine could greatly benefit.

Related Results

Development of inactivated mycoplasma gallisepticum vaccine in chickens
Development of inactivated mycoplasma gallisepticum vaccine in chickens
Mycoplasma gallisepticum (MG) is the respiratory pathogen causing chronic respiratory disease (CRD) in poultry. More importantly, MG infection affects the economic losses of poultr...
Evaluation of Cross Protective Efficacy of Commercial Vaccines against Mannheimia haemolytica in Mice
Evaluation of Cross Protective Efficacy of Commercial Vaccines against Mannheimia haemolytica in Mice
Mannheimia haemolytica together with Pasteurella multocida represents as a major bacterial causative agent of cattle, sheep and goats respiratory diseases and its one of the most i...
Identification of serotypes Pasteurella multocida and Mannheimia haemolytica from cattle and sheep in central Ethiopia
Identification of serotypes Pasteurella multocida and Mannheimia haemolytica from cattle and sheep in central Ethiopia
Abstract Background: Pneumonic pasteurellosis is a multi-factorial respiratory disease of cattle and sheep caused by combination of etiologic agents; hence, reliable inform...
Primerjalna književnost na prelomu tisočletja
Primerjalna književnost na prelomu tisočletja
In a comprehensive and at times critical manner, this volume seeks to shed light on the development of events in Western (i.e., European and North American) comparative literature ...

Back to Top