Literature DB >> 23881675

An evaluation of circulating bovine viral diarrhea virus type 2 maternal antibody level and response to vaccination in Angus calves.

E D Downey1, R G Tait, M S Mayes, C A Park, J F Ridpath, D J Garrick, J M Reecy.   

Abstract

Vaccination against viruses has been shown to help prevent bovine respiratory disease in cattle. However, both passively acquired maternal antibody concentration and calf age have been shown to impact the ability of the immune system of a calf to respond to vaccination. The objectives of this study were to identify and evaluate environmental and management factors that affect 1) passively acquired bovine viral diarrhea virus (BVDV) type 2 antibody level, 2) decay rate of passively acquired BVDV type 2 antibody level, and 3) responses to BVDV type 2 vaccinations. A 2-shot modified live vaccine was administered to 1,004 Angus calves that were weaned at either the initial vaccination (n = 508) or the booster vaccination (n = 496). Calves weaned at the initial vaccination averaged 139 d whereas calves weaned at booster vaccination averaged 128 d of age. Bovine viral diarrhea virus type 2 antibodies were measured in 3 approximately 21-d intervals, serially collected serum samples to quantify antibody levels at initiation and end of vaccination protocol in addition to responses to initial, booster, and overall vaccination protocol. Amount of passively transferred antibody in the calf increased as dam age increased from 2 to 6 yr (P < 0.05) with no differences after dams reached 6 yr (P > 0.05). Calf age nested within birth year-season and dam age affected both initial and final antibody level, initial response, booster response, and overall antibody response to vaccination. The level of circulating, passively acquired maternal antibodies present at the time of vaccination had a significant (P < 0.05) negative effect on antibody responses to vaccination (initial response, booster response, and overall response). Calves that were weaned at the time of initial vaccination had significantly (P < 0.05) greater final antibody level, initial response, and overall response to vaccination than animals weaned at booster vaccination. In order for a calf to mount an overall antibody response to vaccination, maternal antibodies in circulation need to be less than 3.12 titers. However, the age at which a calf reached this antibody threshold was dependent on dam age. This information will help cattle managers and consultants design vaccination protocols to successfully mount an antibody response to vaccination.

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Year:  2013        PMID: 23881675     DOI: 10.2527/jas.2012-5890

Source DB:  PubMed          Journal:  J Anim Sci        ISSN: 0021-8812            Impact factor:   3.159


  10 in total

1.  Effects of vaccination timing against respiratory pathogens on performance, antibody response, and health in feedlot cattle.

Authors:  Thiago F Schumaher; Reinaldo F Cooke; Alice P Brandão; Kelsey M Schubach; Osvaldo A de Sousa; David W Bohnert; Rodrigo S Marques
Journal:  J Anim Sci       Date:  2019-02-01       Impact factor: 3.159

2.  Evaluation of responses to vaccination of Angus cattle for four viruses that contribute to bovine respiratory disease complex.

Authors:  L M Kramer; M S Mayes; E Fritz-Waters; J L Williams; E D Downey; R G Tait; A Woolums; C Chase; J M Reecy
Journal:  J Anim Sci       Date:  2017-11       Impact factor: 3.159

3.  Effects of endophyte-infected tall fescue seed and protein supplementation on stocker steers: II. Adaptive and innate immune function.

Authors:  Rebecca K Poole; Alecia R Brown; Matthew H Poore; Carrie L Pickworth; Daniel H Poole
Journal:  J Anim Sci       Date:  2019-10-03       Impact factor: 3.159

4.  Effects of timing of vaccination relative to weaning and post-weaning frequency of energy supplementation on growth and immunity of beef calves.

Authors:  Gleise M Silva; Matthew H Poore; Juliana Ranches; Philipe Moriel
Journal:  J Anim Sci       Date:  2018-02-15       Impact factor: 3.159

5.  Effects of gradual reduction in frequency of energy supplementation on growth and immunity of beef steers.

Authors:  Gleise M Silva; Matt H Poore; Juliana Ranches; Glauber S Santos; Philipe Moriel
Journal:  J Anim Sci       Date:  2018-02-15       Impact factor: 3.159

Review 6.  Maternal antibodies: clinical significance, mechanism of interference with immune responses, and possible vaccination strategies.

Authors:  Stefan Niewiesk
Journal:  Front Immunol       Date:  2014-09-16       Impact factor: 7.561

7.  Genome-wide association study for response to vaccination in Angus calves1.

Authors:  L M Kramer; M S Mayes; E D Downey; R G Tait; A Woolums; C Chase; J M Reecy
Journal:  BMC Genet       Date:  2019-01-08       Impact factor: 2.797

Review 8.  Applications of Nanovaccines for Disease Prevention in Cattle.

Authors:  Teresia W Maina; Elizabeth A Grego; Paola M Boggiatto; Randy E Sacco; Balaji Narasimhan; Jodi L McGill
Journal:  Front Bioeng Biotechnol       Date:  2020-12-11

9.  Variations in antibody repertoires correlate with vaccine responses.

Authors:  Yana Safonova; Sung Bong Shin; Luke Kramer; James Reecy; Corey T Watson; Timothy P L Smith; Pavel A Pevzner
Journal:  Genome Res       Date:  2022-03-31       Impact factor: 9.438

10.  Estimation of the within-herd transmission rates of bovine viral diarrhoea virus in extensively grazed beef cattle herds.

Authors:  Jun-Hee Han; Jenny F Weston; Cord Heuer; M Carolyn Gates
Journal:  Vet Res       Date:  2019-11-29       Impact factor: 3.683

  10 in total

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