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Updated: Aug 13, 2026

Bovine Mammary Gland Biopsy Techniques
Published on: December 23, 2018
Viability of milk neutrophils and severity of bovine coliform mastitis
J Mehrzad1, L Duchateau, C Burvenich
1Ghent University, Faculty of Veterinary Medicine, Department of Physiology, Biochemistry and Biometrics, Salisburylaan 133, B-9820 Merelbeke, Belgium.
Abstract:
To study the host-pathogen interactions during Escherichia coli mastitis, we first determined whether E. coli infection would change blood and milk polymorphonuclear neutrophil (PMN) chemiluminescence (CL) and viability. We then hypothesized that when E. coli invade the mammary gland, the viable PMN in milk would efficiently phagocytose and destroy E. coli before establishment of infection. We observed that the phagocytosis-dependent and independent CL were closely linked to PMN viability and were crucial to the outcome of mastitis. Maximal PMN influx and colony-forming units in infected quarters appeared at postinfection hours (PIH) 6 to 24. This further boosted PMN recruitment through bone marrow-blood barrier as well as blood-milk barrier. The survival of recruited PMN in the E. coli-infected quarters was much higher than that of noninfected quarters. Chemiluminescence activity of PMN from the infected quarters significantly increased following E. coli infection, even exceeding that of blood at PIH 6, 12, and 18 to 24; no such increase was observed in noninfected quarters, suggesting that the various responses of milk PMN to stimuli resulted largely from PMN viability. The highest CL intensity and durability was observed in milk PMN from infected quarters at PIH 12. Whereas an increased viability of PMN in the noninfected quarters was only significant at PIH 6, the viability of PMN in infected quarters was long lasting and significantly higher at PIH 6 to 72. Importantly, higher preinfection milk PMN viability correlated with bacterial clearance, which was accompanied by faster recovery. Our study strongly supports the hypothesis that boosting milk PMN viability could be a strategy with which to prevent or reduce the severity of coliform mastitis in dairy cows. This strategy might be achieved through strengthening bone marrow functionality.
Insights
Boosting milk polymorphonuclear neutrophil (PMN) viability enhances bacterial clearance and recovery from Escherichia coli mastitis. Increased PMN viability in infected quarters is key to combating E. coli infections in dairy cows.
Area of Science:
- Veterinary Immunology
- Bacterial Pathogenesis
- Dairy Cattle Health
Background:
- Escherichia coli mastitis is a significant challenge in dairy herds.
- Host-pathogen interactions, particularly the role of neutrophils, are critical in determining disease outcome.
- Polymorphonuclear neutrophils (PMN) are key immune cells involved in combating bacterial infections.
Purpose of the Study:
- To investigate the impact of E. coli infection on blood and milk PMN chemiluminescence (CL) and viability.
- To determine the relationship between PMN viability, CL, and the clearance of E. coli during mastitis.
- To evaluate the potential of enhancing PMN viability as a strategy to manage coliform mastitis.
Main Methods:
- Measurement of PMN chemiluminescence (CL) and viability in blood and milk of cows infected with E. coli.
- Monitoring of PMN influx, bacterial load (colony-forming units), and PMN survival in infected and non-infected mammary quarters.
- Correlation analysis between pre-infection PMN viability and bacterial clearance/recovery rates.
Main Results:
- E. coli infection significantly increased PMN recruitment and survival in infected quarters.
- Phagocytosis-dependent and independent CL were closely linked to PMN viability and crucial for mastitis outcome.
- Higher pre-infection milk PMN viability correlated with enhanced bacterial clearance and faster recovery from mastitis.
Conclusions:
- Milk PMN viability is a critical factor in controlling E. coli mastitis.
- Boosting milk PMN viability presents a promising strategy for preventing or reducing the severity of coliform mastitis.
- Strategies to enhance PMN viability, potentially through strengthening bone marrow function, warrant further investigation.

