Effects of a six-week intraduodenal supplementation with quercetin on liver lipid metabolism and oxidative stress in peripartal dairy cows

verfasst von
A. K. Stoldt, M. Mielenz, G. Nürnberg, H. Sauerwein, T. Esatbeyoglu, A. E. Wagner, G. Rimbach, A. Starke, S. Wolffram, C. C. Metges
Abstract

The purpose of this study was to evaluate possible effects of quercetin (Q) on liver lipid metabolism and antioxidative status in periparturient dairy cows. The periparturient period is associated with enormous metabolic changes for dairy cows. Energy needs for incipient lactation are too high to be balanced by feed intake, leading to negative energy balance and body fat mobilization. It has been estimated that this leads to the development of fatty liver in about 50% of cows, which are at high risk for disease. Furthermore, the antioxidative status of these cows may be impaired. Quercetin is a plant flavonoid having hepatoprotective and antioxidative potential and the ability to reduce liver lipid accumulation in monogastric animals. Little information is available in regard to these effects in ruminants. To prevent microbial Q degradation in the rumen, Q was administered via a duodenal fistula to improve systemic availability. Five cows of the Q-treated group received, daily, 100 mg of quercetin dehydrate/ kg BW in a 0.9% sodium chloride solution from d −20 until d 20 relative to calving, whereas 5 control (CTR) cows received only a sodium chloride solution. Blood samples were taken weekly and liver biopsies were performed in wk −4, −2, and 3 relative to calving. Cows treated with Q showed a tendency (P = 0.082) for lower liver fat content compared with CTR cows. Liver glycogen, glutathione concentrations, and relative mRNA abundance of genes related to hepatic lipid metabolism and antioxidative status as well as parameters of antioxidative status in plasma were not affected (P > 0.1) by Q supplementation. In conclusion, liver fat content in dairy cows tended to be reduced by Q supplementation, but potential underlying mechanisms remain unclear because analyzed parameters related to hepatic lipid metabolism and antioxidative defense were not altered by Q supplementation.

Externe Organisation(en)
Forschungsinstitut für Nutztierbiologie (FBN)
Rheinische Friedrich-Wilhelms-Universität Bonn
Universität Leipzig
Christian-Albrechts-Universität zu Kiel (CAU)
Typ
Artikel
Journal
Journal of Animal Science
Band
94
Seiten
1913-1923
Anzahl der Seiten
11
ISSN
0021-8812
Publikationsdatum
05.2016
Publikationsstatus
Veröffentlicht
Peer-reviewed
Ja
ASJC Scopus Sachgebiete
Lebensmittelwissenschaften, Nutztierwissenschaften und Zoologie, Genetik
Elektronische Version(en)
https://doi.org/10.2527/jas.2016-0338 (Zugang: Geschlossen)