Abstract

EFSA Supporting PublicationsVolume 12, Issue 6 828E Technical reportOpen Access EFSA's assistance for the 2015 Codex Committee on Residues of Veterinary Drugs in Food (CCRVDF) in relation to rBST European Food Safety Authority (EFSA), European Food Safety Authority (EFSA)Search for more papers by this author European Food Safety Authority (EFSA), European Food Safety Authority (EFSA)Search for more papers by this author First published: 23 June 2015 https://doi.org/10.2903/sp.efsa.2015.EN-828Citations: 2 Published date: 23 June 2015 Question number: EFSA-Q-2015-00384 AboutPDF ToolsExport citationAdd to favoritesTrack citation ShareShare Give accessShare full text accessShare full-text accessPlease review our Terms and Conditions of Use and check box below to share full-text version of article.I have read and accept the Wiley Online Library Terms and Conditions of UseShareable LinkUse the link below to share a full-text version of this article with your friends and colleagues. Learn more.Copy URL Share a linkShare onFacebookTwitterLinkedInRedditWechat References Aust V, Knappstein K, Kunz HJ, Kaspar H, Wallmann J and Kaske M, 2013. Feeding untreated and pasteurized waste milk and bulk milk to calves: effects on calf performance, health status and antibiotic resistance of faecal bacteria. Journal of Animal Physiology and Animal Nutrition, 97, 1091– 1103. Bauman DE, McBride BW, Burton JL and Sejrsen K, 1994. Somatotropin (BST): International Dairy Federation technical report. Bulletin of the International Dairy Federation, 2– 7. Bauman DE, Everett RW, Weiland WH and Collier RJ, 1999. Production responses to bovine somatotropin in northeast dairy herds. Journal of Dairy Science, 82, 2564– 2573. Bergonier D, 2014. The impact of antibiotic therapy on antimicrobial resistance of mastitis. Point Veterinaire, 45, 58– 64. Beuron DC, Cortinhas CS, Botaro BG, Macedo SN, Goncalves JL, Brito MAVP and Santos MV, 2014. Risk factors associated with the antimicrobial resistance of Staphylococcus aureus isolated from bovine mastitis. Pesquisa Veterinaria Brasileira, 34, 947– 952. Bonneau M and Laarveld B, 1999. Biotechnology in animal nutrition, physiology and health. Livestock Production Science, 59, 223– 241. Boutinaud M, Rousseau C, Keisler DH and Jammes H, 2003. Growth hormone and milking frequency act differently on goat mammary gland in late lactation. Journal of Dairy Science, 86, 509– 520. Broom DM and Corke MJ, 2002. Effects of disease on farm animal welfare. Acta Veterinaria Brno, 71, 133– 136. Brozos C, Saratsis P, Boscos C, Kyriakis SC and Tsakalof P, 1998. Effects of long-term recombinant bovine somatotropin (bST) administration on milk yield, milk composition and mammary gland health of dairy ewes. Small Ruminant Research, 29, 113– 120. Brunton LA, Duncan D, Coldham NG, Snow LC and Jones JR, 2012. A survey of antimicrobial usage on dairy farms and waste milk feeding practices in England and Wales. Veterinary Record, 171, 296– 239. Campos BG, Coelho SG, Quintao AML, Rabelo E, Machado TS and Silper BF, 2011. Use of bovine somatotropine (BST) 500 mg in crossbred Bos taurus * Bos indicus cows every 12 or 14 days. A Hora Veterinaria, 30, 8– 13. Chadio SE, Zervas G, Kiriakou K, Goulas C and Menegatos J, 2000. Effects of recombinant bovine somatotropin administration to lactating goats. Small Ruminant Research, 35, 263– 269. Chilliard Y, Colleau JJ, Disenhaus C, Lerondelle C, Mouchet C and Paris A, 1998. Recombinant growth hormone: potential interest and risks of its use for bovine milk production. A review. Productions Animales, 11, 15– 32. Chilliard Y, Lerondelle C, Disenhaus C, Mouchet C and Paris A, 2001. Recombinant growth hormone: potential interest and risks of its use in bovine milk production. In: Biotechnology in animal husbandry. R Eds Renaville and A. Burny Kluwer Academic Publishers, the Netherlands, 65– 97. Chiofalo V, Baldi A, Savoini G, Polidori F, Dell'Orto V and Politis I, 1999. Response of dairy ewes in late lactation to recombinant bovine somatotropin. Small Ruminant Research, 34, 119– 125. Collier RJ, Byatt JC, Denham SC, Eppard PJ, Fabellar AC, Hintz RL, McGrath MF, McLaughlin CL, Shearer JK, Veenhuizen JJ and Vicini JL, 2001. Effects of sustained release bovine somatotropin (sometribove) on animal health in commercial dairy herds. Journal of Dairy Science, 84, 1098– 1108. Collier RJ and Bauman DE, 2014. Update on human health concerns of recombinant bovine somatotropin use in dairy cows. Journal of Animal Science, 92, 1800– 1807. da Costa Krewer C, Santos Amanso E, Veneroni Gouveia G, de Lima Souza R, da Costa MM and Aparecido Mota R, 2015. Resistance to antimicrobials and biofilm formation in Staphylococcus spp. isolated from bovine mastitis in the Northeast of Brazil. Tropical animal health and production, 47, 511– 518. Dagenais R, 1995. Recombinant BST from the perspective of protecting the rights of consumers. Producteur de Lait Quebecois, 15, 22– 24. De Briyne N, Atkinson J, Pokludova L and Borriello SP, 2014. Antibiotics used most commonly to treat animals in Europe. Veterinary Record, 175, 1– 8. Dechet AM, Scallan E, Gensheimer K, Hoekstra R, Gunderman-King J, Lockett J, Wrigley D, Chege W, Sobel J and Multistate Working G, 2006. Outbreak of multidrug-resistant Salmonella enterica serotype Typhimurium Definitive Type 104 infection linked to commercial ground beef, northeastern United States, 2003–2004. Clinical Infectious Diseases, 42, 747– 752. De Vliegher S, Fox LK, Piepers S, McDougall S and Barkema HW, 2012. Invited review: Mastitis in dairy heifers: nature of the disease, potential impact, prevention, and control. Journal of Dairy Science, 95, 1025– 1040. Dohoo IR, Leslie K, DesCoteaux L, Fredeen A, Dowling P, Preston A and Shewfelt W, 2003a. A meta-analysis review of the effects of recombinant bovine somatotropin 1. Methodology and effects on production. Canadian Journal of Veterinary Research-Revue Canadienne de Recherche Veterinaire, 67, 241– 251. Dohoo IR, DesCoteaux L, Leslie K, Fredeen A, Shewfelt W, Preston A and Dowling P, 2003b. A meta-analysis review of the effects of recombinant bovine somatotropin 2. Effects on animal health, reproductive performance, and culling. Canadian Journal of Veterinary Research-Revue Canadienne de Recherche Veterinaire, 67, 252– 264. Dubreuil P, 1997. Bovine somatotropin: impact on milk yield and composition. Medecin Veterinaire du Quebec, 27, 35– 36. Duse A, Waller KP, Emanuelson U, Unnerstad HE, Persson Y and Bengtsson B, 2015. Risk factors for antimicrobial resistance in fecal Escherichia coli from preweaned dairy calves. Journal of Dairy Science, 98, 500– 516. ECDC EFSA and EMA (European Centre for Disease Prevention and Control, European Food Safety Authority and European Medicines Agency), 2015. ECDC/EFSA/EMA first joint report on the integrated analysis of the consumption of antimicrobial agents and occurrence of antimicrobial resistance in bacteria from humans and food-producing animals. EFSA Journal 2015; 13(1):4006, 114 pp. doi:10.2903/j.efsa.2015.4006 EFSA (European Food Safety Authority), 2008. Scientific Opinion of the Panel on Biological Hazards on a request from the European Food Safety Authority on foodborne antimicrobial resistance as a biological hazard. The EFSA Journal 2008, 765, 1– 87. EFSA (European Food Safety Authority), 2009a. Scientific Opinion of the Panel on Animal Health and Welfare on a request from the Commission on the risk assessment of the impact of housing, nutrition and feeding, management and genetic selection on udder problems in dairy cows. EFSA Journal 2009, 1141, 1– 60. EFSA (European Food Safety Authority), 2009b. Scientific report prepared by the Animal Health and Welfare Unit on the effects of farming systems on dairy cow welfare and disease. Annex to the EFSA Journal 2009, 1143. Available at: http://www.efsa.europa.eu/en/efsajournal/doc/1143r.pdf EFSA (European Food Safety Authority), 2010. Application of systematic review methodology to food and feed safety assessments to support decision making. EFSA Journal 2010; 8(6):1637, 90 pp. doi:10.2903/j.efsa.2010.1637 EFSA AHAW Panel (EFSA Panel on Animal Health and Welfare), 2012. Scientific Opinion on the use of animal-based measures to assess welfare of dairy cows. EFSA Journal 2012; 10(1):2554, 81 pp. doi:10.2903/j.efsa.2012.2554 EMA-ESVAC (European Medicines Agency – European Surveillance of Veterinary Antimicrobial Consumption), 2014. Sales of veterinary antimicrobial agents in 26 EU/EEA countries in 2012. Available at: http://www.ema.europa.eu/docs/en_GB/document_library/Report/2014/10/WC500175671.pdf Erasmus LJ and Webb EC, 2013. The effect of production system and management practices on the environmental impact, quality and safety of milk and dairy products. South African Journal of Animal Science, 43, 424– 434. FDA (Food and Drug Administration), 1993. Freedom of Information Summary recombinant DNA-derived methionyl bovine somatotropin, trade name: POSILAC® (sterile sometribove zinc suspension). Available at: http://www.fda.gov/downloads/AnimalVeterinary/Products/ApprovedAnimalDrugProducts/FOIADrugSummaries/ucm050022.pdf Feckinghaus MA, 2009. Influence of recombinant bovine somatotropin (rBST) in the lipid profile and milk composition of lactating Murrah water buffaloes. Master's thesis, University of São Paulo, São Paulo, Brazil. 99 pp. Ferrari E and Maraboli C, 2014. Mastitis severity and therapeutic options. Summa, Animali da Reddito, 9, 49– 52. Fetrow J and Eicker S, 2003. High production and health – A curious paradox. Bovine Practitioner, 37, 128– 136. Glanville J, Varley D, Brazier H, Arber M, Wood H, Dooley G, 2014. Inventory of Sources of Scientific Evidence Relevant to EFSA's Risk Assessments and Information Sessions on Literature Searching Techniques (CFT/EFSA/SAS/2011/03 Inventory Report). EFSA supporting publication 2014:EN-593 73 pp. Gulay MS, Hayen MJ, Teixeira LC, Wilcox CJ and Head HH, 2003. Responses of Holstein cows to a low dose of somatotropin (bST) prepartum and postpartum. Journal of Dairy Science, 86, 3195– 3205. Gulay MS, Liboni M, Hayen MJ and Head HH, 2007. Supplementing Holstein cows with low doses of bovine somatotropin prepartum and postpartum reduces calving-related diseases. Journal of Dairy Science, 90, 5439– 5445. Health Canada, 1998. Report of the Canadian Veterinary Medical Association Expert Panel on rbST (content archived on June 24, 2013). Available at: http://www.hc-sc.gc.ca/dhp-mps/vet/issues-enjeux/rbst-stbr/rep_cvma-rap_acdv_tc-tm-eng.php Idriss SE, Foltys V, Tancin V, Kirchnerova K, Tancinova D and Zaujec K, 2014. Mastitis pathogens and their resistance against antimicrobial agents in dairy cows in Nitra, Slovakia. Slovak Journal of Animal Science, 47, 33– 38. IFST (Institute of Food Science Technology), 1998. IFST position statement – bovine somatotropin (BST). Food Science & Technology Today, 12, 0950-9623, 169– 176. Jagielski T, Puacz E, Lisowski A, Siedlecki P, Dudziak W, Miedzobrodzki J and Krukowski H, 2014. Short communication: Antimicrobial susceptibility profiling and genotyping of Staphylococcus aureus isolates from bovine mastitis in Poland. Journal of Dairy Science, 97, 6122– 6128. Judge LJ, Bartlett PC, Lloyd JW and Erskine RJ, 1999. Recombinant bovine somatotropin: association with reproductive performance in dairy cows. Theriogenology, 52, 481– 496 Kim Y and Kim D, 2012. Effects of Boostin-250 supplementation on milk production and health of dairy cows. Journal of Veterinary Clinics, 29, 213– 219. Macrina AL, Kauf ACW, Pape-Zambito DA and Kensinger RS, 2014. Induced lactation in heifers: Effects. of dexamethasone and age at induction on milk yield and composition. Journal of Dairy Science, 97, 1446– 1453. Masoero F, Moschini M, Rossi F and Piva G, 1998. Effect of bovine somatotropin on milk production, milk quality and the cheese-making properties of Grana Padano cheese. Livestock Production Science, 54, 107– 114. McClary DG, Green HB, Basson RP and Nickerson SC, 1994. The effects of a sustained-release recombinant bovine somatotropin (Somidobove) on udder helath for a full lactation. Journal of Dairy Science, 77, 2261– 2271. McDougall S, Hussein H and Petrovski K, 2014. Antimicrobial resistance in Staphylococcus aureus, Streptococcus uberis and Streptococcus dysgalactiae from dairy cows with mastitis. New Zealand Veterinary Journal, 62, 68– 76. Millstone E, Brunner E and White I, 1994. Plagiarism or protecting public health? Nature, 371, 647– 648. Monsallier G, 1991. The impact of bovine somatotropin on udder health. Proceedings of the Conferences Mammites des Vaches Laitières, Paris, 18-19 decembre 1991. Ed Espinasse J. Société Française de Buiatrie, Toulouse, France, 60– 67. Murphy M, Buckley JF, Whyte P, O'Mahony M, Anderson W, Wall PG and Fanning S, 2007. Surveillance of dairy production holdings supplying raw milk to the farmhouse cheese sector for Escherichia coli O157, O26 and O111. Zoonoses and Public Health, 54, 358– 365. Oliver SP, Boor KJ, Murphy SC and Murinda SE, 2009. Food Safety Hazards Associated with Consumption of Raw Milk. Foodborne Pathogens and Disease, 6, 793– 806. Oliver SP and Murinda SE, 2012. Antimicrobial Resistance of Mastitis Pathogens. Veterinary Clinics of North America-Food Animal Practice, 28, 165– 185. Olsen SJ, Ying M, Davis MF, Deasy M, Holland B, Iampietro L, Baysinger CM, Sassano F, Polk LD, Gormley B, Hung MJ, Pilot K, Orsini M, Van Duyne S, Rankin S, Genese C, Bresnitz EA, Smucker J, Moll M and Sobel J, 2004. Multidrug-resistant Salmonella Typhimurium infection from milk contaminated after pasteurization. Emerging Infectious Diseases, 10, 932– 935. Pell AN, Tsang DS, Howlett BA, Juyle MT, Meserole VK, Samuels WA, Hartnell GF and Hint RL, 1992. Effects of a prolonged-release formulation of sometribove (n-methionyl bovine somatotropin) on Jersey cows. Journal of Dairy Science, 75, 3416– 3431. Pezeshki A, Capuco AV, De Spiegeleer B, Peelman L, Stevens M, Collier RJ and Burvenich C, 2010. An integrated view on how the management of the dry period length of lactating cows could affect mammary biology and defence. Journal of Animal Physiology and Animal Nutrition, 94, e7– e30. Randall L, Heinrich K, Horton R, Brunton L, Sharman M, Bailey-Horne V, Sharma M, McLaren I, Coldham N, Teale C and Jones J, 2014. Detection of antibiotic residues and association of cefquinome residues with the occurrence of Extended-Spectrum beta-Lactamase (ESBL)-producing bacteria in waste milk samples from dairy farms in England and Wales in 2011. Research in Veterinary Science, 96, 15– 24. Roberson JR, 2012. Treatment of Clinical Mastitis. Veterinary Clinics of North America-Food Animal Practice, 28, 271– 288. Robles BF, Nobrega DB, Guimaraes FF, Wanderley GG and Langoni H, 2014. Beta-lactamase detection in Staphylococcus aureus and coagulase-negative Staphylococcus isolated from bovine mastitis. Pesquisa Veterinaria Brasileira, 34, 325– 328. Ruegg PL, Fabellar A and Hintz RL, 1998. Effect of the use of bovine somatotropin on culling practices in thirty-two dairy herds in Indiana, Michigan, and Ohio. Journal of Dairy Science, 81, 1262– 1266. Ruegsegger, RUF, Tschuor, Sigrist, Rosskopf and Hassig, 2014. Antimicrobial susceptibility of mastitis pathogens of dairy cows in Switzerland. Schweizer Archiv für Tierheilkunde, 156, 483– 488. Saini V, McClure JT, Scholl DT, DeVries TJ and Barkema HW, 2012. Herd-level association between antimicrobial use and antimicrobial resistance in bovine mastitis Staphylococcus aureus isolates on Canadian dairy farms. Journal of Dairy Science, 95, 1921– 1929. SCAHAW (Scientific Committee on Animal Health and Animal Welfare), 1999. Report on Animal welfare aspects on the use of somatotrophin. Available at: http://ec.europa.eu/food/fs/sc/scah/out21_en.pdf Schneider A, Schwegler E, Montagner P, Hax LT, Schmitt E, Pfeifer LFM, Del Pin, FAB, Bianchi I, Paludo GR and Correa MN, 2012. Effect of prepartum somatotropin injection in late-pregnant Holstein heifers on metabolism, milk production and postpartum resumption of ovulation. Animal, 6, 935– 940. SCVMP (Scientific Committee on Veterinary Measures relating to Public Health), 1999. Report on public health aspects of the use of somatotrophin. Available at: http://ec.europa.eu/food/fs/sc/scv/out19_en.html Sechen SJ, 2013. Bovine Somatotropin (bST) – Possible Increased Use of Antibiotics to Treat Mastitis in Cows. Available at: http://www.fda.gov/downloads/animalveterinary/safetyhealth/productsafetyinformation/ucm383073.pdf Seixas R, Santos JP, Bexiga R, Vilela CL and Oliveira M, 2014. Short communication: Antimicrobial resistance and virulence characterization of methicillin-resistant staphylococci isolates from bovine mastitis cases in Portugal. Journal of Dairy Science, 97, 340– 344. Snary EL, Kelly LA, Davison HC, Teale CJ and Wooldridge M, 2004. Antimicrobial resistance: a microbial risk assessment perspective. Journal of Antimicrobial Chemotherapy, 53, 906– 917. Soliman EB and El-Barody MAA, 2014. Physiological responses of dairy animals to recombinant bovine somatotropin: a review. Journal of Cell and Animal Biology, 8, 1– 4. St-Pierre NR, Milliken GA, Bauman DE, Collier RJ, Hogan JS, Shearer JK, Smith KL and Thatcher WW, 2014. Meta-analysis of the effects of sometribove zinc suspension on the production and health of lactating dairy cows. JAVMA-Journal of the American Veterinary Medical Association, 245, 550– 564. Suojala L, Kaartinen L and Pyorala S, 2013. Treatment for bovine Escherichia coli mastitis – an evidence-based approach. Journal of Veterinary Pharmacology and Therapeutics, 36, 521– 531. Supré K, Lommelen K and De Meulemeester L, 2014. Antimicrobial susceptibility and distribution of inhibition zone diameters of bovine mastitis pathogens in Flanders, Belgium. Veterinary Microbiology, 171, 374– 381. Tacket CO, Dominguez LB, Fisher HJ and Cohen ML, 1985. An outbreak of multiple-drug resistant Salmonella enteritis from raw milk. JAMA-Journal of the American Medical Association, 253, 2058– 2060. Tollefson L, Morris D, Boland C and Kay J, 2006. Licensing and approval of antimicrobials for use in animals. In: Antimicrobial resistance in bacteria of animal origin. Ed FM Aarestrup, ASM Press, Washington DC, 361– 374. USDA (United States Department of Agriculture), 2012. Determining U.S. milk quality using bulk-tank somatic cell counts, 2011. Fort Collins (CO): United States Department of Agriculture, Animal and Plant Health Inspection Service, Centers for Epidemiology and Animal Health, Veterinary Services. Available at: http://www.aphis.usda.gov/animal_health/nahms/dairy/downloads/dairy_monitoring/BTSCC_2011infosheet.pdf (last accessed on 23 October 2013). Vallimont JE, Varga GA, Arieli A, Cassidy TW and Cummins KA, 2001. Effects of prepartum somatotropin and monensin on metabolism and production of periparturient Holstein dairy cows. Journal of Dairy Science, 84, 2607– 2621. Van Kessel JS, Sonnier J, Zhao S and Karns JS, 2013. Antimicrobial Resistance of Salmonella enterica Isolates from Bulk Tank Milk and Milk Filters in the United States. Journal of Food Protection, 76, 18– 25. VanBaale MJ, Ledwith DR, Thompson JM, Burgos R, Collier RJ and Baumgard LH, 2005. Effect of increased milking frequency in early lactation with or without recombinant bovine somatotropin. Journal of Dairy Science, 88, 3905– 3912. Varma JK, Marcus R, Stenzel SA, Hanna SS, Gettner S, Anderson BJ, Hayes T, Shiferaw B, Crume TL, Joyce K, Fullerton KE, Voetsch AC and Angulo FJ, 2006. Highly resistant Salmonella Newport-MDRAmpC transmitted through the domestic US food supply: A FoodNet case-control study of sporadic Salmonella Newport infections, 2002–2003. Journal of Infectious Diseases, 194, 222– 230. Vicini J, Etherton T, Kris-Etherton P, Ballam J, Denham S, Staub R, Goldstein D, Cady R, McGrath M and Lucy M, 2008. Survey of retail milk composition as affected by label claims regarding farmmanagement practices. Journal of the American Dietetic Association, 108, 1198– 1203. Villar RG, Macek MD, Simons S, Hayes PS, Goldoft MJ, Lewis JH, Rowan LL, Hursh D, Patnode M and Mead PS, 1999. Investigation of multidrug-resistant Salmonella serotype Typhimurium DT104 infections linked to raw-milk cheese in Washington State. JAMA-Journal of the American Medical Association, 281, 1811– 1816. White DG, 2006. Antimicrobial resistance in pathogenic Escherichia coli from animals. In: Antimicrobial resistance in bacteria of animal origin. Ed FM Aarestrup, ASM Press, Washington DC, 145– 166. WHO (World Health Organization), 1993a. Toxicological evaluation of certain drug residues in food. Prepared by the Fortieth meeting of the Joint FAO/WHO Expert Committee on Food Additives (JECFA). World Health Organization Food Additives Series, 31. Available at: http://www.inchem.org/documents/jecfa/jecmono/v31je01.htm WHO (World Health Organization), 1993b. Evaluation of certain veterinary drug residues in food. Fortieth report of the Joint FAO/WHO Expert Committee on Food Additives. World Health Organization Technical Report series, 832. Available at: http://whqlibdoc.who.int/trs/WHO_TRS_832.pdf WHO (World Health Organization), 1998. Toxicological evaluation of certain drug residues in food. Prepared by the Fiftieth meeting of the Joint FAO/WHO Expert Committee on Food Additives (JECFA). World Health Organization technical report, WHO Food Additives Series 41. Available at: http://www.inchem.org/documents/jecfa/jecmono/v041je01.htm WHO (World Health Organization), 1999. Evaluation of certain veterinary drug residues in food. Fiftieth report of the Joint FAO/WHO Expert Committee on Food Additives. World Health Organization Technical Report Series 888. Available at: http://whqlibdoc.who.int/trs/WHO_TRS_888.pdf WHO (World Health Organization), 2014a. Evaluation of certain veterinary drug residues in food. Seventy-eight report of the Joint FAO/WHO Expert Committee on Food Additives. World Health Organization technical report series, 988. Available at: http://www.who.int/foodsafety/publications/jecfa-reports/en/ WHO (World Health Organization), 2014b. Toxicological evaluation of certain drug residues in food. Prepared by the Seventy-eight meeting of the Joint FAO/WHO Expert Committee on Food Additives (JECFA). World Health Organization technical report series, 69. Available at: http://apps.who.int/iris/bitstream/10665/128550/1/9789241660693_eng.pdf Willeberg P, 1993. Bovine somatotropin and clinical mastitis – epidemiologic assessment of the welfare risk. Livestock Production Science, 36, 55– 66. Citing Literature Volume12, Issue6June 2015828E ReferencesRelatedInformation

Full Text
Published version (Free)

Talk to us

Join us for a 30 min session where you can share your feedback and ask us any queries you have

Schedule a call