Potential use of chromium to combat thermal stress in animals: A review

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TitrePotential use of chromium to combat thermal stress in animals: A review
Type de publicationJournal Article
Year of Publication2020
AuteursBin-Jumah M, El-Hack MEAbd, Abdelnour SA, Hendy YA, Ghanem HA, Alsafy SA, Khafaga AF, Noreldin AE, Shaheen H, Samak D, Momenah M., Allam AA, AlKahtane AA, Alkahtani S, Abdel-Daim MM, Aleya L
JournalSCIENCE OF THE TOTAL ENVIRONMENT
Volume707
Pagination135996
Date PublishedMAR 10
Type of ArticleReview
ISSN0048-9697
Mots-clésChromium, Growth, heat shock proteins, Heat stress, Thermoregulation
Résumé

Heat stress (HS) has adverse effects on the body: it decreases body weight, feed efficiency, feed intake, carcass quality, and nutrient digestibility. Chromium (Cr) can prevent lipid peroxidation induced by HS through its strong antioxidant activities, especially when it is added to the poultry diet. It improves the action of insulin and nutrient metabolism (of lipids, proteins, nucleic acid, and carbohydrates) through activation of enzymes associated with such pathways. The results of the studies on Cr added to diets with concentrations of 0.05 mg Cr/kg of Cr-methionine led to improved feed efficiency and DM intake by cows and Holstein dairy calves exposed to high environmental temperatures. Moreover, calves that received Cr at levels of 0.05 mg/kg of body weight tended to have higher serum concentrations of glucose and higher ratios of insulin to glucose. In heat-stressed pigs, Cr addition (200 ppb) increased blood neutrophils by about 37%. Several studies have asserted that Cr can inhibit inflammation in lactating cows by promoting the release of Hsp72, assisting production of IL-10 and inhibiting degradation of I kappa B alpha in HS conditions. In addition, Cr supplementation was observed to possibly have positive impacts on both cell-mediated and humeral immunity in heat-stressed buffalo calves. Studies over the last two decades have shown with certainty that chromium supplementation has an impact on many variables in chickens. Moreover, Cr is believed to increase insulin action in insulin-sensitive tissues (i.e., adipose and muscles), resulting in increased farm animal productivity through the improvement of feed intake, growth rate, carcass quality, reproductive parameters and immune functions. (C) 2019 Elsevier B.V. All rights reserved.

DOI10.1016/j.scitotenv.2019.135996