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1.
PLoS One ; 8(10): e76418, 2013.
Article in English | MEDLINE | ID: mdl-24204624

ABSTRACT

"Test-and-slaughter" has been successful in industrialized countries to control and eradicate tuberculosis from cattle; however, this strategy is too expensive for developing nations, where the prevalence is especially high. Vaccination with the Calmette-Guérin (BCG) strain has been shown to protect against the development of lesions in vaccinated animals: mouse, cattle and wildlife species. In this study, the immune response and the pathology of vaccinated (BCG-prime and BCG prime-CFP-boosted) and unvaccinated (controls) calves were evaluated under experimental settings. A 10(6) CFU dose of the BCG strain was inoculated subcutaneously on the neck to two groups of ten animas each. Thirty days after vaccination, one of the vaccinated groups was boosted with an M. bovis culture filtrate protein (CFP). Three months after vaccination, the three groups of animals were challenged with 5×10(5) CFU via intranasal by aerosol with a field strain of M. bovis. The immune response was monitored throughout the study. Protection was assessed based on immune response (IFN-g release) prechallenge, presence of visible lesions in lymph nodes and lungs at slaughter, and presence of bacilli in lymph nodes and lung samples in histological analysis. Vaccinated cattle, either with the BCG alone or with BCG and boosted with CFP showed higher IFN-g response, fewer lesions, and fewer bacilli per lesion than unvaccinated controls after challenge. Animals with low levels of IFN-g postvaccine-prechallenge showed more lesions than animals with high levels. Results from this study support the argument that vaccination could be incorporated into control programs to reduce the incidence of TB in cattle in countries with high prevalence.


Subject(s)
BCG Vaccine/immunology , Mycobacterium bovis/immunology , Tuberculosis, Bovine/prevention & control , Animals , BCG Vaccine/administration & dosage , Cattle , Interferon-gamma/blood , Interferon-gamma Release Tests , Lung/microbiology , Lung/pathology , Lymph Nodes/microbiology , Lymph Nodes/pathology , Tuberculin Test , Tuberculosis, Bovine/diagnosis , Vaccination/veterinary
2.
Clin Vaccine Immunol ; 20(4): 627-33, 2013 Apr.
Article in English | MEDLINE | ID: mdl-23425597

ABSTRACT

Bovine tuberculosis (bTB) remains a problem on many dairy farms in Mexico, as well as a public health risk. We previously found a high frequency of Mycobacterium bovis DNA in colostrum from dairy cows using a nested PCR to detect mpb70. Since there are no reliable in vivo tests to determine the effectiveness of booster Mycobacterium bovis BCG vaccination against bTB, in this work we monitored M. bovis DNA in colostrum by using this nested PCR. In order to decrease the risk of adverse reactions in animals likely containing viable M. bovis, a single application of BCG and a subunit vaccine (EEP-1) formulated with M. bovis culture filtrate proteins (CFP) and a copolymer as the adjuvant was performed in tuberculin skin test-negative cattle (TST(-)), while TST reactor animals (TST(+)) received EEP-1 only. Booster immunization using EEP-1 was applied to both groups, 2 months after primary vaccination to whole herds and 12 months later to lactating cows. Colostrum samples were collected from 6 farms where the cows were vaccinated over a 12-month period postvaccination and, for comparison, from one control farm where the cows were not vaccinated with comparable bTB prevalence. We observed an inverse relationship between the frequency of M. bovis DNA detection and time postvaccination at the first (P < 0.001) and second (P < 0.0001) 6-month periods. Additionally, the concentration of gamma interferon (IFN-γ) was higher in mpb70 PCR-positive colostrum samples (P = 0.0003). These results suggest that M. bovis DNA frequency in colostrum could be a potentially useful biomarker for bTB vaccine efficacy on commercial dairy farms.


Subject(s)
BCG Vaccine/immunology , Colostrum/microbiology , DNA, Bacterial/isolation & purification , Mycobacterium bovis/isolation & purification , Tuberculosis, Bovine/prevention & control , Animals , BCG Vaccine/administration & dosage , Cattle , Mexico , Mycobacterium bovis/genetics , Mycobacterium bovis/immunology , Polymerase Chain Reaction , Tuberculosis, Bovine/immunology , Tuberculosis, Bovine/microbiology , Vaccines, Subunit/administration & dosage , Vaccines, Subunit/immunology
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