Nutritional strategies to optimize dairy cattle immunity
Пищевые стратегии оптимизации иммунитета у молочного скота
2016-01-29
SCID: 54.1/8mn9ja4k
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dairy cattle immunityimmune dysfunctionnutrient metabolismoxidative stressperiparturient period
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Abstract (AI)
Dairy cattle are susceptible to increased incidence and severity of both metabolic and infectious diseases during the periparturient period. A major contributing factor to increased health disorders is alterations in bovine immune mechanisms. Indeed, uncontrolled inflammation is a major contributing factor and a common link among several economically important infectious and metabolic diseases including mastitis, retained placenta, metritis, displaced abomasum, and ketosis. The nutritional status of dairy cows and the metabolism of specific nutrients are critical regulators of immune cell function. There is now a greater appreciation that certain mediators of the immune system can have a reciprocal effect on the metabolism of nutrients. Thus, any disturbances in nutritional or immunological homeostasis can provide deleterious feedback loops that can further enhance health disorders, increase production losses, and decrease the availability of safe and nutritious dairy foods for a growing global population. This review will discuss the complex interactions between nutrient metabolism and immune functions in periparturient dairy cattle. Details of how either deficiencies or overexposure to macro- and micronutrients can contribute to immune dysfunction and the subsequent development of health disorders will be presented. Specifically, the ways in which altered nutrient metabolism and oxidative stress can interact to compromise the immune system in transition cows will be discussed. A better understanding of the linkages between nutrition and immunity may facilitate the design of nutritional regimens that will reduce disease susceptibility in early lactation cows.
Key Findings
1
Deficiencies or excessive exposure to macro- and micronutrients can cause immune dysfunction and contribute to subsequent health disorders.
2
Interactions between altered nutrient metabolism and oxidative stress can compromise immunity; understanding these links may enable nutritional strategies that reduce disease susceptibility during early lactation.
3
Nutritional status and metabolism of specific nutrients critically regulate immune-cell function, while immune mediators can reciprocally alter nutrient metabolism.
4
Periparturient dairy cows experience increased metabolic and infectious disease susceptibility partly because immune mechanisms become dysregulated.
5
Uncontrolled inflammation links multiple economically important disorders, including mastitis, retained placenta, metritis, displaced abomasum, and ketosis.
Research Object
Periparturient dairy cattle (transition cows)
Research Subject
Interactions between nutrient metabolism and immune function, including how nutrient deficiencies or overexposure and oxidative stress cause immune dysfunction and related health disorders
Publication Details
Publication Date
2016-01-29
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