Effect of feeding heat-treated and unheated colostrum on immunoglobulin G absorption, health and performance of neonatal Holstein dairy calves

  • Mohammad Rafiei Gorgan University of Agricultural Sciences and Natural Resources http://orcid.org/0000-0001-9073-8356
  • Taghi Ghoorchi Gorgan University of Agricultural Sciences and Natural Resources
  • Abdolhakim Toghdory Gorgan University of Agricultural Sciences and Natural Resources
  • Mostafa Moazeni Shahid Chamran University of Ahvaz
  • Mohsen Khalili Islamic Azad University
Keywords: immunoglobulin G, colostrum, health, serum total protein, weaning.

Abstract

First colostrum is an important source of nutrients and immune factors which are necessary for calves in the first weeks of life. Despite these benefits, colostrum can also represent one of the earliest potential exposures of dairy calves to infectious agents which these patogens can act directly on growth and cause diseases such as scours or septicemia. With recent increased interest in pasteurized milk feeding systems, producers have been curious to learn if there may also be benefits from feeding pasteurized colostrum. This study was realized to determine the effects of feeding heat-treated colostrum or unheated colostrum on passive transfer of immunity, immunoglobulin G (IgG) concentration, total plate count, health and performance of neonatal dairy calves. First-milking colostrum was collected from Holstein cows and frozen at -20°C to accumulate a large batch. Pooled batches of colostrum were mixed and divided equally: One half was fed unheated colostrum; whereas the other half was fed after heat treatment at 60°C for 30 min. Forty newborn male Holstein dairy calves were fed either unheated (n = 20) and heat-treated colostrum (n = 20), 10% of their birth weight. Calves received 4 L within 1 to 2h after birth and residuals was fed 6h after birth. Serum samples collected from calves and were assayed for serum total protein (STP) and IgG. Feed intake recorded weekly and body weight and skeletal growth measures recorded at d 3 and d 63 (weaning). Every day, calves clinically diagnosed either as being healthy or suffering from respiratory disease and neonatal calf diarrhea. Heat-treated colostrum resulted in lower colostrum bacterial concentration (2.01 vs. 3.96 cfu mL-1). Calves fed heat treated colostrum had greater STP in 24, 72h and 23d, IgG concentrations at 24 and 72h plus unheated colostrum. Also weaning weight and average daily gain were greater in calves feed heated colostrum. There were no differences in starter intake and feed efficiency between two groups. Calves fed heat-treated colostrum had lower fecal scores, diarrhea and pneumonia incidence. There were not differences in skeletal growth measurements except body barrel. These results shows that feeding heated colostrum can provide better growth and health in neonatal calves.

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References

Acres, S. D. (1985). Enterotoxigenic Escherichia coli infections in newborn calves: a review. Journal of Dairy Science, 68(1), 229-256. doi: 10.3168/jds.S0022-0302(85)80814-6.

Al Mawly, J., Grinberg, A., Prattley, D., Moffat, J., Marshall, J., & French, N. (2015). Risk factors for neonatal calf diarrhoea and enteropathogen shedding in New Zealand dairy farms. The Veterinary Journal, 203(2), 155-160. doi: 10.1016/j.tvjl.2015.01.010.

Armengol, R., & Fraile, L. (2016). Colostrum and milk pasteurization improve health status and decrease mortality in neonatal calves receiving appropriate colostrum ingestion. Journal of Dairy Science, 99(6), 4718-4725. doi: 10.3168/jds.2015-10728.

Berge, A. C. B., Besser, T. E., Moore, D. A., & Sischo, W. M. (2009). Evaluation of the effects of oral colostrum supplementation during the first fourteen days on the health and performance of preweaned calves. Journal of Dairy Science, 92(1), 286-295. doi: 10.3168/jds.2008-1433.

Colditz, I. G. (2004). Some mechanisms regulating nutrient utilisation in livestock during immune activation: an overview. Australian Journal of Experimental Agriculture, 44(5), 453-457. doi: 10.1071/EA02066.

Corley, L. D., Staley, T. E., Bush, L. J., & Jones, E. W. (1977). Influence of colostrum on transepithelial movement of Escherichia coli 055. Journal of Dairy Science, 60(9), 1416-1421. doi: 10.3168/jds.S0022-0302(77)84046-0.

Crouch, C. F., Oliver, S., Hearle, D. C., Buckley, A., Chapman, A. J., & Francis, M. J. (2000). Lactogenic immunity following vaccination of cattle with bovine coronavirus. Vaccine, 19(2-3), 189-196. doi: 10.1016/S0264-410X(00)00177-8.

DeNise, S. K., Robison, J. D., Stott, G. H., & Armstrong, D. V. (1989). Effects of passive immunity on subsequent production in dairy heifers. Journal of Dairy Science, 72(2), 552-554. doi: 10.3168/jds.S0022-0302(89)79140-2.

Donahue, M., Godden, S. M., Bey, R., Wells, S., Oakes, J. M., Sreevatsan, S., ... Fetrow, J. (2012). Heat treatment of colostrum on commercial dairy farms decreases colostrum microbial counts while maintaining colostrum immunoglobulin G concentrations. Journal of Dairy Science, 95(5), 2697-2702. doi: 10.3168/jds.2011-5220.

Donovan, G. A., Badinga, L., Collier, R. J., Wilcox, C. J., & Braun, R. K. (1986). Factors influencing passive transfer in dairy calves. Journal of Dairy Science, 69(3), 754-759. doi: 10.3168/jds.S0022-0302(86)80464-7.

Donovan, G. A., Dohoo, I. R., Montgomery, D. M., & Bennett, F. L. (1998). Associations between passive immunity and morbidity and mortality in dairy heifers in Florida, USA. Preventive Veterinary Medicine, 34(1), 31-46. doi: 10.1016/S0167-5877(97)00060-3.

Elizondo-Salazar, J. A., & Heinrichs, A. J. (2008). Heat treating bovine colostrum. The Professional Animal Scientist, 24(6), 530-538. doi: 10.15232/S1080-7446(15)30902-5.

Elizondo-Salazar, J. A., & Heinrichs, A. J. (2009a). Feeding heat-treated colostrum or unheated colostrum with two different bacterial concentrations to neonatal dairy calves. Journal of Dairy Science, 92(9), 4565-4571. doi: 10.3168/jds.2009-2188.

Elizondo-Salazar, J. A., & Heinrichs, A. J. (2009b). Feeding heat-treated colostrum to neonatal dairy heifers: Effects on growth characteristics and blood parameters. Journal of Dairy Science, 92(7), 3265-3273. doi: /10.3168/jds.2008-1667.

Elizondo-Salazar, J. A., Jayarao, B. M., & Heinrichs, A. J. (2010). Effect of heat treatment of bovine colostrum on bacterial counts, viscosity, and immunoglobulin G concentration. Journal of Dairy Science, 93(3), 961-967. doi: 10.3168/jds.2009-2388.

Gelsinger, S. L., Jones, C. M., & Heinrichs, A. J. (2015). Effect of colostrum heat treatment and bacterial population on immunoglobulin G absorption and health of neonatal calves. Journal of Dairy Science, 98(7), 4640-4645. doi: 10.3168/jds.2014-8790.

Godden, S., McMartin, S., Feirtag, J., Stabel, J., Bey, R., Goyal, S., ... Chester-Jones, H. (2006). Heat-treatment of bovine colostrum. II: effects of heating duration on pathogen viability and immunoglobulin G. Journal of Dairy Science, 89(9), 3476-3483. doi: 10.3168/jds.S0022-0302(06)72386-4.

Godden, S. M., Smith, S., Feirtag, J. M., Green, L. R., Wells, S. J., & Fetrow, J. P. (2003). Effect of on-farm commercial batch pasteurization of colostrum on colostrum and serum immunoglobulin concentrations in dairy calves. Journal of Dairy Science, 86(4), 1503-1512. doi: 10.3168/jds.S0022-0302(03)73736-9.

Godden, S. M., Smolenski, D. J., Donahue, M., Oakes, J. M., Bey, R., Wells, S., ... Fetrow, J. (2012). Heat-treated colostrum and reduced morbidity in preweaned dairy calves: Results of a randomized trial and examination of mechanisms of effectiveness. Journal of Dairy Science, 95(7), 4029-4040. doi: 10.3168/jds.2011-5275.

Johnson, J. L., Godden, S. M., Molitor, T., Ames, T., & Hagman, D. (2007). Effects of feeding heat-treated colostrum on passive transfer of immune and nutritional parameters in neonatal dairy calves. Journal of Dairy Science, 90(11), 5189-5198. doi: 10.3168/jds.2007-0219.

Lorenz, I., Earley, B., Gilmore, J., Hogan, I., Kennedy, E., & More, S. J. (2011). Calf health from birth to weaning. III. housing and management of calf pneumonia. Irish Veterinary Journal, 64(14), 1-9. doi: /10.1186/2046-0481-64-14.

McMartin, S., Godden, S., Metzger, L., Feirtag, J., Bey, R., Stabel, J., ... Chester-Jones, H. (2006). Heat treatment of bovine colostrum. I: Effects of temperature on viscosity and immunoglobulin G level. Journal of Dairy Science, 89(6), 2110-2118. doi: 10.3168/jds.S0022-0302(06)72281-0.

Meganck, V., Hoflack, G., & Opsomer, G. (2014). Advances in prevention and therapy of neonatal dairy calf diarrhoea: a systematical review with emphasis on colostrum management and fluid therapy. Acta Veterinaria Scandinavica, 56(75), 1-8. doi: 10.1186/s13028-014-0075-x.

Meylan, M., Rings, D. M., Shulaw, W. P., Kowalski, J. J., Bech-Nielsen, S., & Hoffsis, G. F. (1996). Survival of Mycobacterium paratuberculosis and preservation of immunoglobulin G in bovine colostrum under experimental conditions simulating pasteurization. America Journal of Veterinary Research, 57(11), 1580-1585.

Morrill, K. M., Conrad, E., Lago, A., Campbell, J., Quigley, J., & Tyler, H. (2012). Nationwide evaluation of quality and composition of colostrum on dairy farms in the United States. Journal of Dairy Science, 95(7), 3997-4005. doi: 10.3168/jds.2011-5174.

Pardon, B., Alliët, J., Boone, R., Roelandt, S., Valgaeren, B., & Deprez, P. (2015). Prediction of respiratory disease and diarrhea in veal calves based on immunoglobulin levels and the serostatus for respiratory pathogens measured at arrival. Preventive Veterinary Medicine, 120(2), 169-176. doi: 10.1016/j.prevetmed.2015.04.009.

Quigley III, J. D., & Drewry, J. J. (1998). Nutrient and immunity transfer from cow to calf pre-and postcalving. Journal of Dairy Science, 81(10), 2779-2790. doi: 10.3168/jds.S0022-0302(98)75836-9.

Ragsdale, A. C., & Brody, S. (1923). The colostrum problem and it solution. Journal of Dairy Science, 6(2), 137-144. doi: 10.3168/jds.S0022-0302(23)94072-5.

Statistical Analysis System [SAS]. (2004). SAS/STAT User guide, Version 9.0. Cary, NC: SAS Institute Inc.

Stewart, S., Godden, S., Bey, R., Rapnicki, P., Fetrow, J., Farnsworth, R., ... Mueller, K. (2005). Preventing bacterial contamination and proliferation during the harvest, storage, and feeding of fresh bovine colostrum. Journal of Dairy Science, 88(7), 2571-2578. doi: 10.3168/jds.S0022-0302(05)72933-7.

Tyler, J. W., Hancock, D. D., Parish, S. M., Rea, D. E., Besser, T. E., Sanders, S. G., & Wilson, L. K. (1996). Evaluation of 3 assays for failure of passive transfer in calves. Journal of Veterinary Internal Medicine, 10(5), 304-307. doi: 10.1111/j.1939-1676.1996.tb02067.x.

Tyler, J. W., Lakritz, J., Hostetler, D. E., Douglas, V., Weaver, D. M., Steevens, B. J., ... Denbigh, J. (2000). Effect of pasteurization at 76 and 63 C on the absorption of colostral IgG in calves. Journal of Dairy Research, 67(4), 619-623. doi: 10.1017/S0022029900004441.

Windeyer, M. C., Leslie, K. E., Godden, S. M., Hodgins, D. C., Lissemore, K. D., & LeBlanc, S. J. (2014). Factors associated with morbidity, mortality, and growth of dairy heifer calves up to 3 months of age. Preventive Veterinary Medicine, 113(2), 231-240. doi: 10.1016/j.prevetmed.2013.10.019.

Yang, M., Zou, Y., Wu, Z. H., Li, S. L., & Cao, Z. J. (2015). Colostrum quality affects immune system establishment and intestinal development of neonatal calves. Journal of Dairy Science, 98(10), 7153-7163. doi: 10.3168/jds.2014-9238.

Published
2019-06-14
How to Cite
Rafiei, M., Ghoorchi, T., Toghdory, A., Moazeni, M., & Khalili, M. (2019). Effect of feeding heat-treated and unheated colostrum on immunoglobulin G absorption, health and performance of neonatal Holstein dairy calves. Acta Scientiarum. Animal Sciences, 41(1), e45533. https://doi.org/10.4025/actascianimsci.v41i1.45533
Section
Ruminant Nutrition

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