Metabolic factors affecting the inflammatory response of periparturient dairy cows
Top Cited Papers
- 29 June 2009
- journal article
- review article
- Published by Cambridge University Press (CUP) in Animal Health Research Reviews
- Vol. 10 (1) , 53-63
- https://doi.org/10.1017/s1466252309990016
Abstract
Dairy cattle are susceptible to increased incidence and severity of disease during the periparturient period. Increased health disorders have been associated with alterations in bovine immune mechanisms. Many different aspects of the bovine immune system change during the periparturient period, but uncontrolled inflammation is a dominant factor in several economically important disorders such as metritis and mastitis. In human medicine, the metabolic syndrome is known to trigger several key events that can initiate and promote uncontrolled systemic inflammation. Altered lipid metabolism, increased circulating concentrations of non-esterified fatty acids and oxidative stress are significant contributing factors to systemic inflammation and the development of inflammatory-based diseases in humans. Dairy cows undergo similar metabolic adaptations during the onset of lactation, and it was postulated that some of these physiological events may negatively impact the magnitude and duration of inflammation. This review will discuss how certain types of fatty acids may promote uncontrolled inflammation either directly or through metabolism into potent lipid mediators. The relationship of increased lipid metabolism and oxidative stress to inflammatory dysfunction will be reviewed as well. Understanding more about the underlying cause of periparturient health disorders may facilitate the design of nutritional regimens that will meet the energy requirements of cows during early lactation and reduce the susceptibility to disease as a function of compromised inflammatory responses.Keywords
This publication has 82 references indexed in Scilit:
- Impact of oxidative stress on the health and immune function of dairy cattleVeterinary Immunology and Immunopathology, 2009
- Innate immune mechanisms linking non-esterified fatty acids and respiratory diseaseProgress in Lipid Research, 2008
- Selenium inhibits 15-hydroperoxyoctadecadienoic acid-induced intracellular adhesion molecule expression in aortic endothelial cellsFree Radical Biology & Medicine, 2008
- Shifts in Thioredoxin Reductase Activity and Oxidant Status in Mononuclear Cells Obtained from Transition Dairy CattleJournal of Dairy Science, 2007
- Effects of Dietary Vitamin C on Neutrophil Function and Responses to Intramammary Infusion of Lipopolysaccharide in Periparturient Dairy CowsJournal of Dairy Science, 2007
- Free radicals and antioxidants in normal physiological functions and human diseaseThe International Journal of Biochemistry & Cell Biology, 2007
- Enhanced 15-HPETE production during oxidant stress induces apoptosis of endothelial cellsProstaglandins & Other Lipid Mediators, 2005
- Increased 15-HPETE production decreases prostacyclin synthase activity during oxidant stress in aortic endothelial cellsFree Radical Biology & Medicine, 2001
- Effect of Interferon-γ on the Production of Tumor Necrosis Factor During Acute Escherichia coli MastitisJournal of Dairy Science, 1992
- Relationships Among Selenium, Vitamin E, and Mammary Gland Health in Commercial Dairy HerdsJournal of Dairy Science, 1990