Trace element supplementation after major burns increases burned skin trace element concentrations and modulates local protein metabolism but not whole-body substrate metabolism.

Details

Serval ID
serval:BIB_02B4D07B7858
Type
Article: article from journal or magazin.
Collection
Publications
Institution
Title
Trace element supplementation after major burns increases burned skin trace element concentrations and modulates local protein metabolism but not whole-body substrate metabolism.
Journal
American Journal of Clinical Nutrition
Author(s)
Berger M.M., Binnert C., Chiolero R.L., Taylor W., Raffoul W., Cayeux M.C., Benathan M., Shenkin A., Tappy L.
ISSN
0002-9165
Publication state
Published
Issued date
05/2007
Peer-reviewed
Oui
Volume
85
Number
5
Pages
1301-1306
Language
english
Notes
Publication types: Journal Article ; Randomized Controlled Trial ; Research Support, Non-U.S. Gov't - Publication Status: ppublish
Abstract
BACKGROUND: After major burns, patients exhibit an intense catabolism, and the wounds require surgery and grafting for closure. Complications, such as weight loss and delayed wound healing, are worsened by trace element (TE) deficiencies. OBJECTIVE: We aimed to assess the effects of TE supplements on systemic substrate turnover and local protein metabolism during wound healing after major burns. DESIGN: This was a prospective, randomized, placebo-controlled trial in 21 patients aged 35 +/- 11 y with burns on 45 +/- 16% of their body surface area; 12 had skin biopsies performed on days 3, 10, and 20, and 10 patients underwent a stable-isotope investigation on day 10. Intravenous copper, selenium, and zinc (TE group) or vehicle (V group) was given with a saline solution for 14-21 d. On day 10, [(13)C]phenylalanine (600-microg/kg bolus followed by 12 microg x kg(-1) x min(-1)) plus 6-[(2)H(2)]glucose and [(2)H(5)]glycerol were infused for 6 h to determine skin protein turnover. Biopsies were performed 1 and 6 h after the start of infusion to determine [(13)C]phenylalanine enrichment. RESULTS: The patients' mean age and burn severity did not differ significantly between the groups nor between the skin investigations subgroups. Plasma TE concentrations were significantly higher in the TE group. In the burned areas, the skin contents of selenium (P=0.02) and zinc (P=0.03) increased by day 20. The supernatant-to-plasma (13)C enrichment ratio in burned skin was 0.363 +/- 0.094 (TE group) and 0.286 +/- 0.130 (V group) after 1 h (NS) and 0.592 +/- 0.153 (TE group) and 0.262 +/- 0.171 (V group) after 6 h, which reflected lower catabolism in the TE group (P=0.03). No significant differences in whole-body substrate turnover were found between the groups. CONCLUSION: TE supplementation was associated with an increased skin tissue content of selenium and zinc and with a reduction in skin protein catabolism.
Keywords
Adult, Burns, Carbon Isotopes, Copper, Deuterium, Dietary Supplements, Enteral Nutrition, Female, Humans, Male, Nutritional Requirements, Prospective Studies, Protein Biosynthesis, Proteins, Selenium, Skin, Skin Transplantation, Trace Elements, Wound Healing, Zinc
Pubmed
Web of science
Create date
24/01/2008 13:36
Last modification date
20/08/2019 12:24
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