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Published on: September 4, 2012
Nitric oxide production during endotoxin-induced mastitis in the cow
L Bouchard1, S Blais, C Desrosiers
1Dairy and Swine Research and Development Centre, Agriculture and Agri-Food Canada, Lennoxville, Quebec, Canada.
Insights
Nitric oxide (NO) is released during endotoxin-induced mastitis in cows. This production is linked to the inducible nitric oxide synthase enzyme and may play a role in the inflammatory response.
Area of Science:
- Veterinary Immunology
- Biochemistry
- Animal Science
Background:
- Mastitis is a significant economic and welfare concern in dairy cattle.
- Endotoxin from Escherichia coli is a common cause of bacterial mastitis.
- Nitric oxide (NO) is a signaling molecule implicated in inflammation.
Purpose of the Study:
- To investigate nitric oxide production during endotoxin-induced mastitis in cows.
- To determine the source of nitric oxide release.
- To identify the specific nitric oxide synthase (NOS) isoform involved.
Main Methods:
- Induction of mastitis in cows using Escherichia coli endotoxin infusion.
- Measurement of nitrite and nitrate (NO metabolites) in milk.
- Culturing of milk somatic cells to assess NO production.
- Administration of aminoguanidine, an inducible NOS inhibitor.
Main Results:
- Nitrite and nitrate levels significantly increased in milk post-endotoxin infusion, peaking at 3 hours and returning to baseline within 48 hours.
- Milk somatic cells harvested 12 hours post-infusion showed increased nitrite and nitrate in their culture medium.
- Aminoguanidine treatment prevented the endotoxin-induced increase in milk nitrite and nitrate levels.
Conclusions:
- Significant nitric oxide production occurs during endotoxin-induced mastitis in cows.
- Milk somatic cells contribute to nitric oxide release during mastitis.
- The inducible form of nitric oxide synthase is responsible for nitric oxide production in this model.
- Nitric oxide may be involved in the inflammatory processes of mastitis.
Abstract:
Nitric oxide production was measured during endotoxin-induced mastitis. One hour after morning milking, the right hind quarters of 15 cows were infused with saline containing Escherichia coli endotoxin. Left hind control quarters were infused with saline only. At varying intervals before and after infusion, diagnostic markers of mastitis were recorded and nitric oxide production was evaluated by measuring nitrite plus nitrate levels in milk. In endotoxin-infused quarters, a significant increase in nitrite plus nitrate concentrations was observed 3 h postinfusion; concentrations decreased to preinfusion levels within 48 h. This change indicates that significant amounts of nitric oxide are released during endotoxin-induced mastitis. At 3 different time points, somatic cells were harvested from milk samples, plated, and maintained in culture for 24 h. The concentration of nitrite plus nitrate in medium from cells harvested 12 h postinfusion was increased, suggesting that nitric oxide is released, at least in part, by milk somatic cells. In a second set of experiments, we evaluated nitric oxide production when animals were infused with endotoxin and aminoguanidine, a specific inhibitor of the inducible form of nitric oxide synthase. In cows treated with aminoguanidine, the increase in nitrite plus nitrate observed after endotoxin infusion was prevented. These results suggest that nitric oxide production during endotoxin-induced mastitis resulted from the activity of the inducible form of nitric oxide synthase. They also support a possible involvement for nitric oxide in the inflammatory reaction observed during mastitis.
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