Research Progress of Young Ruminant Artificial Colostrum

  • LIANG Shuiyuan ,
  • Muqier ,
  • Geriletu ,
  • AO Changjin
Expand
  • 1. Inner Mongolia Key Laboratory of Animal Nutrition and Feed Science, College of Animal Science, Inner Mongolia Agricultural University, Hohhot 010018, China;
    2. College of Food Science and Engineering, Inner Mongolia Agricultural University, Hohhot 010018, China

Received date: 2020-03-10

  Online published: 2020-09-17

Abstract

The structure of the placenta of ruminant mammals is complex, and maternal antibodies cannot be transferred to the fetus. Newborns need to suck colostrum to obtain passive immunity after birth. Due to the nutritional status, parity and multiple lambs of one mother, the young ruminants may cause insufficient intake of colostrum after birth. A series of problems such as poor early immunity of young animals, weak disease resistance, high mortality rate, slow growth rate, and prolonged fattening cycle occur due to incomplete passive immune transfer. Therefore, exploring the passive immunity of ruminant newborn animals, researching and developing artificial colostrum to ensure the healthy and rapid growth of young animals are of great significance to the healthy development of China's animal husbandry and the improvement of economic benefits. This article summarizes the nutritional characteristics of ruminant colostrum and its immunologically active components, the measurement indicators of passive immune transfer, influencing factors, and the effects of passive immune transfer insufficiency on production based on the review of domestic and foreign research literature in this field. The purpose is to provide a reference for further research and practical application of exogenous immunoglobulin in early nutrition of young ruminant s.

Cite this article

LIANG Shuiyuan , Muqier , Geriletu , AO Changjin . Research Progress of Young Ruminant Artificial Colostrum[J]. Chinese Journal of Animal Nutrition, 2020 , 32(9) : 4037 -4043 . DOI: 10.3969/j.issn.1006-267x.2020.09.010

References

[1] 王晓芳.中国人乳和牛乳防御素含量特征及功能研究[D].博士学位论文.上海:上海交通大学,2014:1-2.
[2] 李青.饲喂初乳对犊牛被动免疫失败率影响的探究[D].硕士学位论文.济南:山东农业大学,2014:1-2.
[3] 马燕芬,陈志伟.高效液相色谱在牛初乳成分分离检测中的应用[J].乳业科学与技术,2007,30(2):76-80.
[4] 张俐华.补喂绵羊瘤胃液制备物对1-35日龄羔羊、犊牛增重和血浆免疫球蛋白含量的影响[D].硕士学位论文.乌鲁木齐:新疆农业大学,2013:1-2.
[5] HAMMON H,BLUM J W.Prolonged colostrum feeding enhances xylose absorption in neonatal calves[J].Journal of Animal Science,1997,75(11):2915-2919.  
[6] LARSON B L.Transfer of specific blood serum proteins to lacteal secretions near parturition[J].Journal of Dairy Science,1958,41(8):1033-1044.  
[7] 杨晓宇.莎能奶山羊初乳理化性质及其免疫球蛋白(IgG)的研究[D].博士学位论文.西安:陕西师范大学,2006:34-44.
[8] LARSON B L,HEARY H H,Jr.,DEVERY J E.Immunoglobulin production and transport by the mammary gland[J].Journal of Dairy Science,1980,63(4):665-671.  
[9] JAMES R E,POLAN C E.Effect of orally administered duodenal fluid on serum proteins in neonatal calves[J].Journal of Dairy Science,1978,61(10):1444-1449.  
[10] 杨萌,杨君香,李胜利,等.初乳品质的鉴定及影响因素[J].中国畜牧杂志,2012,48(14):37-42.
[11] REITER B.Antimicrobial systems in milk[J].Journal of Dairy Research,1978,45(1):131-147.  
[12] 李勤凡.初乳中免疫球蛋白的免疫作用[J].动物医学进展,1996,17(4):41-42.
[13] ROY J H B.The calf:management of health[M].London:Butterworth-Heinemann,1990.
[14] 陈瑞芳,王士长,李兴芳,等.水牛初乳中免疫因子和生长因子质量浓度的研究[J].中国乳品工业,2010,38(3):19-21.
[15] SACERDOTE P,MUSSANO F,FRANCHI S,et al.Biological components in a standardized derivative of bovine colostrum[J].Journal of Dairy Science,2013,96(3):1745-1754.  
[16] KOLDOVSKÝ O.Is breast-milk epidermal growth factor biologically active in the suckling?[J].Nutrition,1989,5(4):223-225.
[17] ODLE J,ZIJLSTRA R T,DONOVAN S M.Intestinal effects of milkborne growth factors in neonates of agricultural importance[J].Journal of Animal Science,1996,74(10):2509-2522.  
[18] MAYER B,DOLESCHALL M,BENDER B,et al.Expression of the neonatal Fc receptor (FcRn) in the bovine mammary gland[J].The Journal of Dairy Research,2005,72:107-112.
[19] BESSER T E,GAY C C.Septicemic colibacillosis and failure of passive transfer of colostral immunoglobulin in calves[J].Veterinary Clinics of North America:Food Animal Practice,1985,1(3):445-459.  
[20] 谭江宁,韩玲.免疫球蛋白免疫调节机制的研究进展[J].中国实用儿科杂志,2004,19(5):308-310.
[21] ZAKIAN A,NOURI M,RASOOLI A,et al.Evaluation of 5 methods for diagnosing failure of passive transfer in 160 Holstein calves[J].Veterinary Clinical Pathology,2018,47(2):275-283.  
[22] VATANKHAH M.Relationship between immunoglobulin concentrations in the ewe's serum and colostrum,and lamb's serum in Lori-Bakhtiari sheep[J].Iranian Journal of Applied Animal Science,2013,3(3):539-544.
[23] SHEARER E S.Variation in the depth of the epidural space in successive pregnancies[J].International Journal of Obstetric Anesthesia,1992,1(2):69-70.  
[24] HEINRICHS A J,ELIZONDO-SALAZAR J A.Reducing failure of passive immunoglobulin transfer in dairy calves[J].Revue De Médecine Vétérinaire,2009,160(8):436-440.  
[25] STOTT G H,FELLAH A.Colostral immunoglobulin absorption linearly related to concentration for calves[J].Journal of Dairy Science,1983,66(6):1319-1328.  
[26] BRUJENI G N,JANI S S,ALIDADI N,et al.Passive immune transfer in fat-tailed sheep:evaluation with different methods[J].Small Ruminant Research,2010,90(1/2/3):146-149.
[27] CHIGERWE M,HAGEY J V,ALY S S.Determination of neonatal serum immunoglobulin G concentrations associated with mortality during the first 4 months of life in dairy heifer calves[J].Journal of Dairy Research,2015,82(4):400-406.  
[28] MCGEE M,EARLEY B.Review:passive immunity in beef-suckler calves[J].Animal,2018,13(4):810-825.
[29] STALEY T E,JONES E W,CORLEY L D,et al.Intestinal permeability to Escherichia coli in the foal[J].American Journal of Veterinary Research,1970,31(8):1481-1483.
[30] STALEY T E,JONES E W,CORLEY L D.Fine structure of duodenal absorptive cells in the newborn pig before and after feeding of colostrum[J].American Journal of Veterinary Research,1969,30(4):567-581.
[31] STALEY T E,JONES E W,MARSHALL A E.The jejunal absorptive cell of the newborn pig:An electron microscopic study[J].Anatomical Record,1968,161(4):497-515.  
[32] STALEY T E,CORLEY L D,BUSH L J,et al.The ultrastructure of neonatal calf intestine and absorption of heterologous proteins[J].The Anatomical Record,1972,172(3):559-579.  
[33] LECCE J G,BROUGHTON C W.Cessation of uptake of macromolecules by neonatal guinea pig,hamster and rabbit intestinal epithelium (closure) and transport into blood[J].The Journal of Nutrition,1973,103(5):744-750.  
[34] BRAMBELL F W R.The passive immunity of the young mammal[J].Biological Reviews,2008,33(4):488-531.
[35] COMLINE R S,ROBERTS H E,TITCHEN D A.Route of absorption of colostrum globulin in the newborn animal[J].Nature,1951,167(4249):561-562.  
[36] STALEY T E,JONES E W,BUSH L J.Maternal transport of immunoglobulins to the calf[J].Journal of Dairy Science,1971,54(9):1323.
[37] MORIN D E,NELSON S V,REID E D,et al.Effect of colostral volume,interval between calving and first milking,and photoperiod on colostral IgG concentrations in dairy cows[J].Journal of the American Veterinary Medical Association,2010,237(4):420-428.  
[38] LORA I,BARBERIO A,CONTIERO B,et al.Factors associated with passive immunity transfer in dairy calves:combined effect of delivery time,amount and quality of the first colostrum meal[J].Animal,2017,12(5):1-9.
[39] 马燕芬.不同季节牛初乳对新生犊牛被动免疫影响的研究[D].硕士学位论文.呼和浩特:内蒙古农业大学,2006:25-30.
[40] MCGUIRK S M,COLLINS M.Managing the production,storage,and delivery of colostrum[J].Veterinary Clinics of North America:Food Animal Practice,2004,20(3):593-603.  
[41] DAVIS C L,DRACKLEY J K,TOMKINS T.The development,nutrition,and management of the young calf[M].Ames Iowa:Iowa state university press,1998.
[42] SAKAI R R,COONS D M,CHIGERWE M.Effect of single oroesophageal feeding of 3 L versus 4 L of colostrum on absorption of colostral IgG in Holstein bull calves[J].Livestock Science,2012,148(3):296-299.  
[43] NOCEK J E,BRAUND D G,WARNER R G.Influence of neonatal colostrum administration,immunoglobulin,and continued feeding of colostrum on calf gain,health,and serum protein[J].Journal of Dairy Science,1984,67(2):319-333.  
[44] WELLS S J,DARGATZ D A,OTT S L.Factors associated with mortality to 21 days of life in dairy heifers in the United States[J].Preventive Veterinary Medicine,1996,29(1):9-19.  
[45] GODDEN S.Colostrum management for dairy calves[J].Veterinary Clinics of North America:Food Animal Practice,2008,24(1):19-39.  
[46] ELIZONDO-SALAZAR J A,HEINRICHS A J.Feeding heat-treated colostrum to neonatal dairy heifers:effects on growth characteristics and blood parameters[J].Journal of Dairy Science,2009,92(7):3265-3273.  
[47] GODDEN S M,SMOLENSKI D J,DONAHUE M,et al.Heat-treated colostrum and reduced morbidity in preweaned dairy calves:results of a randomized trial and examination of mechanisms of effectiveness[J].Journal of Dairy Science,2012,95(7):4029-4040.  
[48] JOHNSON J L,GODDEN S M,MOLITOR T,et al.Effects of feeding heat-treated colostrum on passive transfer of immune and nutritional parameters in neonatal dairy calves[J].Journal of Dairy Science,2007,90(11):5189-5198.  
[49] 刘惠芳,周安国.初乳中的细胞因子及其生物学功能[J].饲料博览,2001(12):17-19.
[50] DEWELL R D,HUNGERFORD L L,KEEN J E,et al.Association of neonatal serum immunoglobulin G1 concentration with health and performance in beef calves[J].Journal of the American Veterinary Medical Association,2006,228(6):914-921.  
[51] RAZZAQUE M A,AL-MUTAWA T,ABBAS S,et al.Performance of pre-weaned dairy calves under hot arid environment:effects of immunoglobulins and age on diseases and mortality[J].American Journal of Applied Sciences,2009,6(11):763-769.
[52] 照日格图,敖长金.被动免疫对羔羊早期健康和生产性能的影响[J].黑龙江畜牧兽医,2010(7):91-92.
[53] CHRISTLEY R M,MORGAN K L,PARKIN T D H,et al.Factors related to the risk of neonatal mortality,birth-weight and serum immunoglobulin concentration in lambs in the UK[J].Preventive Veterinary Medicine,2003,57(4):209-226.  
[54] O'BRIEN J P,SHERMAN D M.Serum immunoglobulin concentrations of newborn goat kids and subsequent kid survival through weaning[J].Small Ruminant Research,1993,11(1):71-77.  
[55] 李墨林,付太银,周磊,等.牛初乳质量及犊牛饲喂初乳的管理技术[J].中国畜牧业,2016(13):62-64.
[56] 李金莲.犊牛人工哺乳技术及注意事项[J].畜牧兽医科学(电子版),2019(6):42-43.
[57] 王建蓉,刘洪英.浅议羔羊的饲养管理[J].畜牧兽医科技信息,2018(7):58.
[58] 照日格图.新生羔羊高效人工初乳的研究[D].硕士学位论文.呼和浩特:内蒙古农业大学,2002.
[59] 敖长金,侯先志,赵志恭,等.天然被动免疫与新生仔畜[C]//中国畜牧兽医学会动物营养学分会第六届全国会员代表大会暨第八届学术研讨会论文集(下).哈尔滨:黑龙江人民出版社,2000.
Outlines

/