2020, Número 4
Efficacy of an extended-release tilmicosin preparation and tulathromycin in the treatment of bovine respiratory disease
Sumano H, Valencia JA, Viveros M, Tapia-Pérez G, Gutiérrez L
Idioma: Español/Inglés
Referencias bibliográficas: 51
Paginas: 1-15
Archivo PDF: 170.16 Kb.
RESUMEN
Sin resumen.
REFERENCIAS (EN ESTE ARTÍCULO)
Matthews KH Jr. Antimicrobial drug use and veterinary costs in U.S. Livestock Production. Electronic Report from the Economic Research Service. USDA, Agriculture Information Bulletin. 2001;766.
Pardon B, Hostens M, Duchateau L, Dewulf J, De Bleecker K, Deprez P. Impact of respiratory disease, diarrhea, otitis and arthritis on mortality and carcass traits in white veal calves. BMC Vet Res. 2013;9:79.
Griffin D, Chengappa MM, Kuszak J, McVey DS. Bacterial Pathogens of the Bovine Respiratory Disease Complex. Vet Clin Food Anim. 2010;26:381-94.
McGuirk SM. Disease management of dairy calves and heifers. Vet Clin North Am: Food Anim Prac. 2008;24:139-53.
Leruste H, Brscic M, Heutinck LFM, Visser EK, Wolthuis-Fillerup M, et al. The relationship between clinical signs of respiratory system disorders and lung lesions at slaughter in veal calves. Prev Vet Med. 2012;105:93-100.
Buczinski S, Forte G, Francoz D, Belanger AM. Comparison of thoracic auscultation, clinical score, and ultrasonography as indicators of bovine respiratory disease in preweaned dairy calves. J Vet Int Med. 2014;28:234-42.
White BJ, Renter DG. Bayesian estimation of the performance of using clinical observations and harvest lung lesions for diagnosing bovine respiratory disease in post-weaned beef calves. J Vet Diagnostic Invest 2009;21:446-53.
Allen JW, Viel L, Bateman KG, Shewen PE, Physick-Sheard P. The microbial-flora of the respiratory-tract in feedlot calves - associations between nasopharyngeal and bronchoalveolar lavage cultures. Can J Vet Res. 1991;55:341-6.
Berman J, Francoz D, Dubuc J, Buczinski S. A randomized clinical trial of a metaphylactic treatment with tildipirosin for bovine respiratory disease in veal calves. BMC Vet Res. 2017;13:176.
Taylor JD, Holland BP, Step DL, Payton M E, Confer AW. Nasal isolation of Mannheimia haemolytica and Pasteurella multocida as predictors of respiratory disease in shipped calves. Res Vet Sci. 2015;99:41-5.
Schaefer AL, Cook NJ, Bench C, Chabot JB, Colyn J, Liu T, et al. The non-invasive and automated detection of bovine respiratory disease onset in receiver calves using infrared thermography. Res Vet Sci. 2012;93:928-35.
Alsemgeest SPM, Kalsbeek HC, Wensing Th, Koemn JP, Van Ederen AM, Gruys E. Concentrations of serum Amyloid a (SAA) and haptoglobin (HP) as parameters of inflammatory diseases in cattle. Vet Quart 1994;16:21-3.
Theurer ME, Anderson DE, White BJ. Effect of Mannheimia haemolytica pneumonia on behavior and physiologic responses of calves during high ambient environmental temperatures. J Anim Sci. 2013;91:3917–3929.
Ellis J, Waldner Ch, Gow S, Jackson M. Relationship of the extent of pulmonary lesions to the partial pressure of oxygen and the lactate concentration in arterial blood in calves experimentally infected with bovine respiratory syncytial virus. Can J Vet Res. 2013;77:205–10.
Ball JJ, Kegley EB, Sarchet J, Powell JG. Comparison of treatment protocols for bovine respiratory disease in high-risk, newly received beef calves. Applied Animal Science 2019;35:278-83. https:// doi.org/10.15232/aas.2018-01836
Abell KM, Theurer ME, Larson RL, White BJ, Apley M. A mixed treatment comparison meta-analysis of metaphylaxis treatments for bovine respiratory disease. J Anim Sci. 2017;95:626-35.
Poulsen-Nautrup B, Van Vlaenderen I, Decker M, Cleale RM. Antimicrobial drug use for control and treatment of bovine respiratory disease in U.S. feedlot cattle: A meta-analysis. Bov Pract. 2017;51:1-13.
Crosby S, Credille B, Giguère S, Berghaus R. Comparative efficacy of enrofloxacin to that of tulathromycin for the control of bovine respiratory disease and prevalence of antimicrobial resistance in Mannheimia Haemolytica in calves at high risk of developing bovine respiratory disease. J Anim Sci. 2018;96:1259-67. doi: 10.1093/jas/sky054.
Lathers CM. Role of Veterinary Medicine in Public Health: Antibiotic Use in Food Animals and Humans and the Effect on Evolution of Antibacterial Resistance. J Clin Pharmacol. 2001;41:595-9. doi: 10.1177/00912700122010474.
Palma E, Tilocca B, Roncada P. Antimicrobial resistance in veterinary medicine: An overview. Int J Mol Sci. 2020;21:1914. doi:10.3390/ijms21061914
Gunes V, Atalanm G. Comparison of ventral coccygeal arterial and jugular venous blood samples for pH, pCO2, HCO3, Be(ecf) and ctCO 2 values in calves with pulmonary diseases. Res Vet Sci. 2006;81:148-51.
Gutiérrez L, Soriano R, Martínez-Cortes I, Miranda-Calderon J, Sumano H. Pharmacokinetics of a new parenteral formulation of Tilmicosin-La in cows. Pak Vet J. 2016;36:165-8.
Mendoza J, Martínez-Cortés I, López-Ordaz R, Gutiérrez L, Sumano, H. Concentrations of tilmicosin in mammary gland secretions of dairy cows following subcutaneous administration of one or two doses of an experimental preparation of tilmicosin and its efficacy against intramammary infections caused by Staphylococcus aureus. Am J Vet Res. 2016;77:922-30.
Hanzlicek GA, White BJ, Mosier D, Renter DG, Amderson DE. Serial evaluation of physiologic, pathological, and behavioral changes related to disease progression of experimentally induced Mannheimia haemolytica pneumonia in postweaned calves. Am J Vet Res. 2010;71:359-69.
Hosmer DW, Lemeshow S. Applied logistic regression, 2nd ed. Hoboken, NJ: Jonh Wiley & Sons; 2000. p. 144-60.
Godinho KS, Sarasola P, Renoult E, Tilt N, Keane S, Windsor GD, et al. Use of deep nasopharyngeal swabs as a predictive diagnostic method for natural respiratory infections in calves. Vet Rec. 2007;160:22-5.
Rishmawi N, Ghneim R, Kattan R, Ghneim R, Zoughbi M, Abu-Diab A, et al. Survival of fastidious and nonfastidious aerobic bacteria in three bacterial transport swab systems. J Clin Microb. 2007;4:1278-83.
Faul F, Erdfelder E, Lang AG, Buchner A. G*Power 3: A flexible statistical power analysis program for the social, behavioral, and biomedical sciences. Beha Res Meth. 2007;39:175-91.
CIPARS report, 2013. Available from: http://www.phac-aspc.gc.ca/cipars-picra/ 2013/annu-reportrapport-eng.php
Rerat M, Albini S, Jaquier V, Hussy D. Bovine respiratory disease: Efficacy of different prophylactic treatments in veal calves and antimicrobial resistance of isolated pasteurellaceae. Prev Vete Med. 2012;103:265-73.
Zaheer R, Cook SR, Klima CL, Stanford K, Alexander T, Topp E, et al. Effect of subtherapeutic vs. therapeutic administration of macrolides on antimicrobial resistance in Mannheimia haemolytica and enterococci isolated from beef cattle. Front Microbiol. 2013;4:133.
BCRC. Beef Cattle Research Council. Bovine Respiratory Disease. March, 2018, Available from: http://www.beefresearch.ca/research-topic.cfm/ bovine-respiratory-disease-38.
Doering R. Reducing antibiotics in meat. Food Law. 2014;22.
Aytekin I, Mamak N, Onmaz AC, Sakin F, Aslan S. Effects of Tulathromycin and Tilmicosin Application in the Treatment of Bovine Respiratory Disease in Cattle. Vet Fakultesi Dergisi. 2010;21:159-62.
Lombardi KR, Portillo T, Hassfurther R, Hunter RP. Pharmacokinetics of tilmicosin in beef cattle following intravenous and subcutaneous administration. J Vet Pharmacol Ther. 2011;34:583-7.
Skogerboe TL, Rooney KA, Nutsch RG, Weigel DJ, Gajewski K, Kilgore WR. Comparative efficacy of tulathromycin versus florfenicol and tilmicosin against undifferentiated bovine respiratory disease in feedlot cattle. Vet Ther. 2005;2:180-96.
Soliman AM, Ali-Ayad AR. Pharmacokinetics and efficacy of tilmicosin in the treatment of Pasteurella haemolytica bronchopneumonia in calves. Pharm Pharmacol. 2014;5:514-23.
Chin AC, Lee WD, Murrin KA, Morck DW, Merrill JK, Dick P, et al. Tilmicosin Induces Apoptosis in Bovine Peripheral Neutrophils in the Presence or in the Absence of Pasteurella haemolytica and Promotes Neutrophil Phagocytosis by Macrophages. Antim Agen Chemother. 2000;44:2465-70.
Fajt VR. The effects of danofloxacin and tilmicosin on peripheral neutrophils in healthy cattle, on peripheral neutrophils in cattle with induced Pasteurella haemolytica pneumonia, and on body temperature measured via radiotelemetry in cattle with induced Pasteurella haemolytica pneumonia. Retrospective Theses and Dissertations 13896. 2000. Available from: http://lib.dr.iastate.edu/ rtd/13896
Godinho KS, Rae A, Windsor GD, Tilt N, Rowan TG, Sunderland SJ. Efficacy of tulathromycin in the treatment of bovine respiratory disease associated with induced M. bovis infections in young dairy calves. Vet Theraphy. 2005;6:96-112.
Nowakowski MA, Inskeep PB, Risk JE, Skogerboe TL, Benchaoui HA, Meinert TR, et al. Pharmacokinetics and lung tissue concentrations of tulathromycin, a new triamilide antibiotic, in cattle. Vet Ther. 2004;5:60-74.
Evans NA. Tulathromycin: an overview of a new triamilide antibiotic for livestock respiratory disease. Vet Ther. 2005;6:83-95.
Rose-Dye TK, Burciaga-Robles LO, Krehbiel CR. Rumen temperature change monitored with remote rumen temperature boluses after challenges with bovine viral diarrhea virus and Mannheimia haemolytica. J Anim Sci 2011;89:1193-2000.
Theurer ME, White BJ, Larson RL, Holstein KK, Amrine DE. Relationship between rectal temperature at first treatment for bovine respiratory disease complex in feedlot calves and the probability of not finishing the production cycle. J Am Vet Med Assoc. 2014;245:1279-85.
Schaefer AL, Cook NJ, Church JS, Basarab J, Perry B, Miller C, et al. The use of infrared thermography as an early indicator of bovine respiratory disease complex in calves. Res Vet Sci. 2007;83:376-84.
Burciaga-Robles LO, Holland BP, Step DL, Krehbiel CR, McMillen GL, Richards CJ, et al. Evaluation of breath biomarkers and serum haptoglobin concentration for diagnosis of bovine respiratory disease in heifers newly arrived at a feedlot. Am J Vet Res. 2009;70:1291-8.
Šoltésová H, Nagy O, Tóthová C, Paulíková I, Seidel H. Blood gases, acid-base status and plasma lactate concentrations in calves with respiratory diseases. Acta Vet Beograd. 2015;65:111-24.
Collie DDS. Pulmonary function changes and clinical findings associated with chronic respiratory disease in calves. Brit Vet J. 1992;148:33-40.
Reinhold P, Födisch G. Lungen function diagnostik bei gesunden und and Pneumonieerkrankten Kälbern. Mh. Vet Med. 1993;48:113-7.
Reinhold P. Physiological and pathophysiological aspects of respiratory function in the bovine species. Tierärztl Umschau. 1997;52:584-92.
Weary DM, Huzzey JM, Von-Keyserlingk MA. Board-invited review: using behavior to predict and identify ill health in animals. J Anim Sci. 2009;87:770-7.