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Article Dans Une Revue Metallomics Année : 2009

Characterization of metal-peptide complexes in feed supplements of essential trace elements

Résumé

Metal chelates with biomolecules are increasingly used in animal supplementation to increase the bioavailability of essential trace elements. However, the transfer of the chelates is not well understood and speciation studies may bring a comprehensive insight to further investigate the biological uptake mechanism(s) implicated. An analytical method was developed for the characterization of the water-soluble metal complexes in animal feed supplements obtained by reaction of a metal salt with a non-GMO soybean enzymatic digest. The method was based on fractionation of the extract by size-exclusion chromatography followed by the analysis of the metal-containing fraction by reversed-phase nanoHPLC with parallel ICP MS and electrospray MS/MS detection. The metal complexes were identified in the mass spectra owing to the Cu characteristic isotopic pattern; the complexation was corroborated by the presence of a peak corresponding to the non-metallated peptide. The study demonstrated the feasibility of SEC-ICP MS to produce characteristic metal (Cu, Zn, Mn, Fe) distribution patterns, which can be of interest to test batch-to-batch reproducibility and to determine the origin of the supplement. The use of the method could be extended to animal feeds prepared using the metal-chelated complexes. Electrospray MS/MS allowed the identification of a number of Cu complexes with peptides. Four different structure conformations were modeled by means of molecular mechanics investigations to assess the chelation stability. © 2009 The Royal Society of Chemistry.

Dates et versions

hal-01560751 , version 1 (11-07-2017)

Identifiants

Citer

A. Yiannikouris, C. Connolly, R. Power, Ryszard Lobinski. Characterization of metal-peptide complexes in feed supplements of essential trace elements. Metallomics, 2009, 1 (3), pp.235--248. ⟨10.1039/b901406c⟩. ⟨hal-01560751⟩
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