中国乳业 ›› 2025, Vol. 0 ›› Issue (6): 100-105.doi: 10.12377/1671-4393.25.06.17

• 疾病防治 • 上一篇    下一篇

奶牛夏季子宫炎发病情况和处理措施

马飞1, 曹梦哲2, 杨利锋3,*   

  1. 1 榆林市畜牧兽医服务中心, 陕西榆林 719000;
    2 天津农学院动物科学与动物医学学院, 天津市农业动物繁育与健康养殖重点实验室, 天津 300384;
    3 洛阳市种业发展中心, 河南洛阳 471000
  • 出版日期:2025-06-25 发布日期:2025-07-04
  • 通讯作者: *杨利锋(1975-),男,河南洛阳人,本科,高级兽医师,研究方向为牛羊饲养管理与疫病防控。
  • 作者简介:马飞(1977-),男,陕西榆林人,本科,兽医师,研究方向为畜牧兽医;曹梦哲(2001-),男,内蒙古通辽人,在读硕士,研究方向为反刍动物营养。

Incidence and Management of Summer Endometritis in Dairy Cows

MA Fei1, CAO Mengzhe2, YANG Lifeng3,*   

  1. 1 Yulin Animal Husbandry and Veterinary Service Center, Yulin Shaanxi 719000;
    2 College of Animal Science and Veterinary Medicine, Tianjin Agricultural University, Tianjin Key Laboratory of Agricultural Animal Breeding and Healthy Husbandry, Tianjin 300384;
    3 Luoyang Seed Industry Development Center, Luoyang Henan 471000
  • Online:2025-06-25 Published:2025-07-04

摘要: 奶牛夏季子宫炎是影响奶牛养殖业的重要繁殖障碍性疾病,其发病率和危害性在高温高湿环境下显著增加。夏季子宫炎主要由梭杆菌属、拟杆菌属、化脓隐秘杆菌和大肠杆菌等病原微生物感染引起,在热应激条件下,这些病原菌更易繁殖并侵袭子宫。发病机制涉及外源性感染、内源性感染和激素调节失衡3 个方面:分娩过程中病原体通过开放的子宫颈直接侵入;围产期代谢紊乱(如酮病、瘤胃酸中毒)导致肠道屏障破坏,病原体经血液循环迁移至子宫;产后雌激素水平骤降抑制免疫功能。临床表现为子宫内膜炎症和脓性恶露排出,可分为临床型子宫炎(CE)和亚临床型子宫炎(SE),其中SE虽无症状但危害更大,可导致受孕率显著降低,部分研究显示降幅达50%以上。流行病学调查显示,初产奶牛发病率显著高于经产牛,其中胎衣不下、死胎和难产是主要诱因。在天津、陕西(陕南地区)、山东(内陆地区)、河南等夏季高温高湿地区,热应激导致奶牛采食量下降、免疫力减弱,加之病原菌繁殖活跃,子宫炎发病率较其他季节提高。防控措施应着重环境调控、营养管理和卫生防疫等方面。

关键词: 子宫炎, 饲养管理, 荷斯坦牛, 夏季

Abstract: Summer cow metritis is a major reproductive disorder in dairy farming,with its incidence and severity significantly increasing under high-temperature and high-humidity conditions. The disease is primarily caused by pathogenic microorganisms such as Fusobacterium spp.,Bacteroides spp.,Trueperella pyogenes and Escherichia coli,which proliferate more aggressively and invade the uterus under heat stress. The pathogenesis involves three key aspects:(1)exogenous infection,where pathogens directly invade through the open cervix during parturition;(2)endogenous infection,where metabolic disorders(e.g.,ketosis,ruminal acidosis)in the peripartum period compromise the intestinal barrier,allowing pathogens to migrate to the uterus via blood circulation;and(3)hormonal imbalance,where a sharp decline in postpartum estrogen levels suppresses immune function.Clinical manifestations include endometrial inflammation and purulent lochia discharge. The disease can be categorized into clinical endometritis (CE)and subclinical endometritis (SE). While SE is asymptomatic,it poses greater harm,significantly reducing conception rates—some studies report a decline of over 50%. Epidemiological studies indicate that first-calving cows have a higher incidence than multiparous cows,with retained placenta,stillbirth,and dystocia being major contributing factors.In regions with hot and humid summers—such as Tianjin,southern Shaanxi,inland Shandong and Henan—heat stress reduces feed intak,weakens immunity,and promotes pathogen proliferation,leading to a higher incidence of metritis compared to other seasons. Prevention and control strategies should focus on environmental management,nutritional optimization and biosecurity measures.

Key words: metritis, herd management, Holstein cows, summer season

[1] Martin S I,Lewis S G,Stephen L,et al.Defining postpartum uterine disease in cattle[J]. Theriogenology,2006, 65(8):1516-1530.
[2] 张磊. 山东省奶牛子宫内膜炎的流行情况调查、病原菌分离鉴定及地区分布特征的研究[D]. 泰安:山东农业大学, 2016:15-18.
[3] Ricci A, Bonizzi G, Sarasso G, et al.Subclinical endometritis in beef cattle in early and late postpartum:Cytology, bacteriology, haptoglobin and test strip efficiency to evaluate the evolution of the disease[J]. Theriogenology, 2017, 94:86-93.
[4] 胡路锋. 奶牛产后不同阶段子宫炎监测及其诊断方法的研究[D]. 石河子:石河子大学, 2014:23-25.
[5] Sheldon I M, Cronin J G, Bromfield J J.Tolerance and innate immunity shape the development of postpartum uterine disease and the impact of endometritis in dairy cattle[J]. Annual Review of Animal Biosciences, 2019, 7(1):321-337.
[6] 齐航. 某规模化养殖场奶牛子宫内膜炎病因分析及综合防治[D]. 杨凌:西北农林科技大学, 2021:30-35.
[7] Sheldon I M, Price S B, Cronin J, et al.Mechanisms of infertility associated with clinical and subclinical endometritis in high producing dairy cattle[J]. Reproduction in Domestic Animals, 2009, 44(S3):1-9.
[8] Kumari S, Kumaresan A, Patbandha T K, et al.Risk factors for metritis and its effect on productive and reproductive performance in dairy cattle and buffaloes[J]. Agricultural Research, 2016, 5(1):45-50.
[9] Olsen M.Factors responsible for post parturient metritis in dairy cattle[J]. The Veterinary Record, 1984, 114(22):539-542.
[10] 郭世宁. 防治奶牛子宫内膜炎新型复方药物制剂宫炎清的研究[D]. 哈尔滨:东北农业大学, 2002:45-50.
[11] 肖杰. 河南沿黄绿色奶业发展带奶牛子宫内膜炎细菌流行病学调查及土霉素治疗前后菌群差异的研究[D]. 长春:吉林大学, 2018:12-15.
[12] 丰缪,马利国,李华松,等. 平顶山市奶牛子宫内膜炎流行规律及相关因素调查与分析[J].中国乳业,2024(12):77-81.
[13] 高虎,张院生,贾凤菊.陕西省靖边县奶牛生殖系统疾病的调查分析[J]. 中国乳业, 2021(12):78-81.
[14] Chen H,Fu K,Pang B,et al.Determination of uterine bacterial community in postpartum dairy cows with metritis based on 16S rDNA sequencing[J]. Veterinary and Animal Science, 2020, 10:100132.
[15] Fregonesi J A, Veira D M, von Keyserlingk M A, et al. Effects of bedding quality on lying behavior of dairy cows[J]. Journal of Dairy Science, 2007, 90(12):5468-5472.
[16] McCarthy M M, Overton M W. Short communication:Model for metritis severity predicts that disease misclassification underestimates projected milk production losses[J]. Journal of Dairy Science, 2018, 101(6):5434-5438.
[17] Holzl M A, Hofer J, Steinberger P, et al.Host antimicrobial proteins as endogenous immunomodulators[J]. Immunology Letters, 2008, 119(1-2):4-11.
[18] Nijnik A, Hancock R.Host defence peptides:Antimicrobial and immunomodulatory activity and potential applications for tackling antibiotic-resistant infections[J]. Emerging Health Threats Journal, 2009, 2:e1.
[19] 肖杰. 河南沿黄绿色奶业发展带奶牛子宫内膜炎细菌流行病学调查及土霉素治疗前后菌群差异的研究[D]. 长春:吉林大学, 2018:55-60.
[20] Giuliodori M J, Magnasco R P, Becu-Villalobos D,et al.Metritis in dairy cows:Risk factors and reproductive performance[J]. Journal of Dairy Science, 2013, 96(6):3621-3631.
[21] Chebel R C.Predicting the risk of retained fetal membranes and metritis in dairy cows according to prepartum hemogram and immune and metabolic status[J]. Preventive Veterinary Medicine, 2021, 187:105231.
[22] 童晓芳, 程思颖, 郭志刚, 等. 我国规模化牧场奶牛胎衣不下和急性子宫炎发病规律调查[J]. 中国兽医杂志, 2025, 61(2):33-39.
[23] Teixeira D L, Villarroel M, María G A.Assessment of different organic bedding materials for fattening lamb[J]. Small Ruminant Research, 2014, 119(1):22-27.
[24] Huzzey J M, Nydam D V, Grant R J, et al.Associations of prepartum plasma cortisol, haptoglobin, fecal cortisol metabolites, and nonesterified fatty acids with postpartum health status in Holstein dairy cows[J]. Journal of Dairy Science, 2011, 94(12):5878-5889.
[25] 丁宝隆. 宁夏部分地区奶牛子宫炎发病规律及细菌分离鉴定与菌群结构分析[D]. 银川:宁夏大学, 2023:20-25.
[26] Drillich M, Beetz O, Pfutzner A, et al.Evaluation of a systemic antibiotic treatment of toxic puerperal metritis in dairy cows[J]. Journal of Dairy Science, 2001, 84(9):2010-2017.
[27] Dubuc J, Duffield T F, Leslie K E, et al.Effects of postpartum uterine diseases on milk production and culling in dairy cows[J]. Journal of Dairy Science, 2011, 94(3):1339-1346.
[28] Carneiro L C, Cronin J G, Sheldon I M.Mechanisms linking bacterial infections of the bovine endometrium to disease and infertility[J]. Reproductive Biology, 2016, 16(1):1-7.
[29] LeBlanc S J. Reproductive tract inflammatory disease in postpartum dairy cows[J]. Animal, 2014, 8(S1):54-63.
[30] 刘兰泉. 牛疱疹病毒-4对牛繁殖的影响综述[J]. 江苏农业科学, 2016, 44(5):12-15.
[31] Frazier K, Pence M, Mauel M J, et al.Endometritis in postparturient cattle associated with bovine herpesvirus-4 infection:15 cases[J]. Journal of Veterinary Diagnostic Investigation, 2001, 13(6):502-508.
[32] 胡元亮, 徐魁梧, 徐芬义, 等. 新型中药促孕灌注液治疗奶牛子宫内膜炎及促孕效果验证[J]. 畜牧与兽医, 1999(3):10-12.
[33] 吴结革, 茆达干. 热应激对动物生殖机能的影响及其作用机理[J]. 中国畜牧兽医文摘, 2007(4):5-7.
[34] 赵鑫. 新疆部分规模化牧场奶牛子宫内膜炎病原菌的分离鉴定及防治[D]. 石河子:石河子大学, 2019:40-45.
[35] 孟彦军. 陇西县奶牛子宫内膜炎流行病学调查与主要致病菌分离鉴定和药敏试验[D]. 兰州:甘肃农业大学, 2017:18-22.
[36] Ghavi H N,Ardalan M.Cow-specific risk factors for retained placenta, metritis and clinical mastitis in Holstein cows[J]. Veterinary Research Communications,2011,35(6):345-354.
[37] Wisnieski L,Norby B,Pierce S J,et al.Predictive models for early lactation diseases in transition dairy cattle at dry-off[J]. Preventive Veterinary Medicine, 2019, 163:68-78.
[38] Zhao C, Bao L, Qiu M, et al.Commensal cow Roseburia reduces gut-dysbiosis-induced mastitis through inhibiting bacterial translocation by producing butyrate in mice[J]. Cell Reports, 2022, 41(8):111681.
[39] Luo S, Wang Y, Kang X, et al.Research progress on the association between mastitis and gastrointestinal microbes in dairy cows and the effect of probiotics[J]. Microbial Pathogenesis, 2022, 173:105809.
[40] Song Y, Cheng J, Yu H, et al.Early warning for ovarian diseases based on plasma non-esterified fatty acid and calcium concentrations in dairy cows[J]. Frontiers in Veterinary Science, 2021, 8:710551.
[41] Dervishi E, Plastow G, Hof B, et al.Common and specific mineral and metabolic features in dairy cows with clinical metritis, hypocalcaemia or ketosis[J]. Research in Veterinary Science, 2021, 135:66-72.
[42] Lopez A, Viala D, Ollier A, et al.Innovative dairy cow management to improve resistance to metabolic and infectious diseases during the transition period[J]. Research in Veterinary Science, 2018, 116:40-46.
[43] 蔡伟弟, 黄建波, 江峰. 浅谈恒温牛舍奶牛热应激的防控[J]. 今日畜牧兽医:奶牛, 2017(8):15-17.
[44] 李茜, 侯海锋, 孙凤莉. 夏季奶牛饲养管理技术要点[J]. 黑龙江畜牧兽医, 2011(9):60-61.
[45] 王浩, 刘凯, 殷海涛. 天津市滨海新区2017-2021年气象预警信号及典型案例分析[J]. 天津科技, 2022(7):49-52.
[46] 王忠阁. 奶牛热应激的防范措施[J]. 畜牧兽医科技信息, 2013(5):62-63.
[47] 张美荣, 廖想想, 陈丹, 等. 产犊季节、胎次及牛场对荷斯坦牛泌乳性能的影响[J]. 中国牛业科学, 2012, 38(4):10-13.
[48] 王艳明. 日粮脂肪和能量水平对奶牛氧化应激、生产性能的影响及抗氧化剂添加效果研究[D]. 杭州:浙江大学, 2010:80-85.
[49] 王典, 周克, 李颖丽, 等. 维生素C的功能及其在奶牛养殖中的应用[J]. 中国奶牛, 2023(5):4-8.
[50] 辛守帅, 刘迎春, 唐明晓, 等. 围产前期低DCAD日粮对奶牛代谢病影响的试验[C]. 青岛市学术年会, 2008:112-115.
[51] 赵明山. 中草药饲料添加剂在奶牛乳房炎治疗中的应用[J]. 今日畜牧兽医, 2023, 39(11):65-67.
[52] 刘红亮, 田兵. 奶牛产后护理流程及产后疾病治疗方案[J]. 今日畜牧兽医(奶牛), 2019(4):50-52.
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