2,324
Views
3
CrossRef citations to date
0
Altmetric
Articles

The effect of bovine vaccines against respiratory viruses administered either intranasal or intramuscular on broncho-alveolar fluid cells of heifers

, , , , , , & show all
Pages 97-106 | Received 14 Apr 2020, Accepted 24 Dec 2020, Published online: 18 Jan 2021

References

  • Allen JW, Viel L, Bateman KG, Rosendal S, Shewen PE. 1992. Cytological findings in bronchoalveolar lavage fluid from feedlot calves: associations with pulmonary microbial flora. Can J Vet Res. 56(2):122–126.
  • Artner B, Reck A, Coelho A, Prediger JJ, Pontarolo DV, Bertagnon HG. 2018. Assessment of the oxidative metabolism of calves’ bronchoalveolar cells: comparison between NBT and fluorimetric techniques. Arq Inst Biol. 85(0):1–5.
  • Batista CF, Blagitz MG, Santos BP, Bertagnon HG, Parra AC, Vianna RS, de Lucca GG, Lima DM, Santos DS, Della Libera AMMP. 2012. Maturation of mononuclear phagocytes in the lungs of young calves-In vitro study. J Dairy Sci. 95(10):5909–5915.
  • Bertagnon HG, Batista CF, Santos BP. d, Lima MGB, Bellinazzi JB, Libera AMMPD. 2017. Influence of orchiectomy of seven month old bulls on bronchoalveolar immune function. Arq Bras Med Vet Zootec. 69(2):310–316.
  • Bertagnon HG, Silva PEG, Wachholz L, Leal MLR, Fernandes WR, Benesi FJ. 2007. Imunoglobulinas no trato respiratório de bezerros sadios durante o primeiro mês de vida. Pesq Vet Bras. 27(12):487–490.
  • Burgos RA, Conejeros I, Hidalgo MA, Werling D, Hermosilla C. 2011. Calcium influx, a new potential therapeutic target in the control of neutrophil-dependent inflammatory diseases in bovines. Vet Immunol Immunopathol. 143(1-2):1–10.
  • Cortese VS, Woolums A, Hurley DJ, Berghaus R, Bernard JK, Short TH. 2017. Comparison of interferon and bovine herpesvirus-1-specific IgA levels in nasal secretions of dairy cattle administered an intranasal modified live viral vaccine prior to calving or on the day of calving. Vet Immunol Immunopathol. 187:35–41.
  • Cusack PMV, McMeniman N, Lean IJ. 2003. The medicine and epidemiology of bovine respiratory disease in feedlots. Aust Vet J. 81 (8):480–487.
  • Dou Y, Fu B, Sun R, Li W, Hu W, Tian Z, Wei H. 2015. Influenza vaccine induces intracellular immune memory of human NK cells. PLoS One. 10 (3):e0121258.
  • Du Manoir JM, Albright BN, Stevenson G, Thompson SH, Mitchell GB, Clark ME, Caswell JL. 2002. Variability of neutrophil and pulmonary alveolar macrophage function in swine. Vet Immunol Immunopathol. 89(3-4):175–186.
  • Edwards TA. 2010. Control methods for bovine respiratory disease for feedlot cattle. Vet Clin Food Anim. 26:273–273.
  • Ellis J, Gow S, West K, Waldner C, Rhodes C, Mutwiri G, Rosenberg H. 2007. Response of calves to challenge exposure with virulent bovine respiratory syncytial virus following intranasal administration of vacines formulated for parenteral administration. J Am Vet Med Assoc. 230(2):233–243.
  • Feitosa FLF. 2014. Semiologia veterinária: a arte do diagnóstico. São Paulo (Brazil): Roca, p. 841.
  • Fonteque JH, Saito ME, Rizelo PA, Teixeira WT, Kohayagawa A. 2015. Comparação entre duas metodologias para a realização do teste de redução do tetrazólio nitroazul (NBT) em caprinos. Pesq Vet Bras. 35(suppl 1):1–4.
  • Fulton RW, Saliki JT, Burge LJ, Payton ME. 2003. Humoral immune response and assessment of vaccine virus shedding in calves receiving modified live virus vaccines containing bovine herpesvirus-1 and bovine viral diarrhoea virus 1a. J Vet Med B Infect Dis Vet Public Health. 50(1):31–37.
  • Gershwin LJ, Schelegle ES, Gunther RA, Anderson ML, Woolums AR, Larochelle DR, Boyle G, Friebertshauser KE, Singer RS. 1998. A bovine model of vaccine enhanced respiratory syncytial virus pathophysiology. Vaccine. 16(11-12):1225–1236.
  • Gomes CG, Bertagnon HG, Batista CF, Santos KR, Libera Ammp D. 2015. Caracterização Leucocítica Pulmonar de Bezerros Após Vacinação Intranasal. Rev Biol Supl. 77:235–236.
  • Gomes RC. 2016. Influência etária na resposta imunológica de bezerros à vacinação intranasal. Tese de Doutorado, Clínica Veterinária. São Paulo (Brazil): Faculdade de Medicina Veterinária e Zootecnia, Universidade de São Paulo, 146 p.
  • Griffin D, Chengappa MM, Kuszak J, McVey DS. 2010. Bacterial pathogens of the bovine respiratory disease complex. Vet Clin North Am Food Anim Pract. 26(2):381–394.
  • Hishiki H, Zuercher AW, Valosky J, Coffin SE. 2004. Regional differences in the early mucosal immune response induced by primary inoculation of mice with respiratory syncytial virus. Microb Pathog. 36(3):141–146.
  • Martin SW, Meek AH, Davis DG, Thomson RG, Johnson JA, Lopez A, Stephens L, Curtis RA, Prescott JF, Rosendol S, et al. 1980. Factors associated with mortality in feedlot cattle: the Bruce county beef cattle project. Can J Comp Med. 10(1):1–10.
  • Meeusen ENT, Walker J, Peters A, Pastoret PP, Jungersen G. 2007. Current status of veterinary vacines. CMR. 20(3):489–510.
  • Mora JR, Iwata M, Eksteen B, Song S-Y, Junt T, Senman B, Otipoby KL, Yokota A, Takeuchi H, Ricciardi-Castagnoli P, et al. 2006. Generation of gut-homing IgA-secreting B cells by intestinal dendritic cells. Science. 314(5802):1157–1160.
  • Neutra MR, Kozlowski PA. 2006. Mucosal vaccines: the promise and the challenge. Nat Rev Immunol. 6(2):148–158.
  • Ollivett TL, Leslie KE, Duffield TF, Nydam DV, Hewson J, Caswell J, Dunn P, Kelton DF. 2018. Field trial to evaluate the effect of an intranasal respiratory vaccine protocol on calf health, ultrasonographic lung consolidation, and growth in Holstein dairy calves. J Dairy Sci. 101(9):8159–8816.
  • Osman R, Malmuthuge N, Gonzalez-Cano P, Griebel P. 2018. Development and function of the mucosal immune system in the upper respiratory tract of neonatal calves. Annu Rev Anim Biosci. 6:1–15.
  • Schatzmayr HG. 2003. Novas perspectivas em vacinas virais. História, Ciências, Saúde. Manguinhos. 10(2):655–669.
  • Shecaira CL. 2017. Avaliação da influência da produção de citocinas no perfil de resposta imunitária em bezerros nos primeiros 30 dias de vida. Tese de Doutorado, Clínica Veterinária. São Paulo (Brazil): Faculdade de Medicina Veterinária e Zootecnia, Universidade de São Paulo, 121 p.
  • Socha W, Rola J, Bednarek D, Urban-Chmiel R, Żmudziński JF. 2013. Shedding course of bovine respiratory syncytial vírus and bovine parainfluenza 3 virus in calves vaccinated intranasally. Bull Vet Inst Pulawy. 57(4):479–483.
  • Svensson C, Liberg P. 2006. The effect of group size on health and growth rateof Swedish dairy calves housed in pens with automatic milk-feeders. Prev Vet Med. 73(1):43–53.
  • Taylor JD, Fulton RW, Lehenbauer TW, Step DL, Confer AW. 2010. The epidemiology of bovine respiratory disease: what is the evidence for preventive measures? Can Vet J. 51 (12):1351–1359.
  • Tizard IR. 2014. Imunologia veterinária. Rio de Janeiro (Brazil): Elsevier, p. 521–557.
  • Vianna RS, Batista CF, Lima DM, Santos KR, Gomes RC, Bertagnon HG, Della Libera AMMP. 2016. Perfil citológico pulmonar de bezerros sadios nos três primeiros meses de vida. Pesq Vet Bras. 36(5):447–452.
  • Walz PH, Newcomer BW, Riddell KP, Scruggs DW, Cortese VS. 2017. Virus detection by PCR following vaccination of naive calves with intranasal or injectable multivalent modified-live viral vaccines. J Vet Diagn Invest. 29(5):628–635.
  • Xue W, Ellis J, Mattick D, Smith L, Brady R, Trigo E. 2010. Immunogenicity of a modified-live virus vaccine against bovine viral diarrhea virus types 1 and 2, infectious bovine rhinotracheitis virus, bovine parainfluenza-3 virus, and bovine respiratory syncytial virus when administered intranasally in young calves. Vaccine. 28(22):3784–3792.