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Thermodynamic and spectroscopic study of the interaction of Cu(II), Ni(II), Zn(II) and Ca(II) ions with 2-amino-N-(2-oxo-2-(2-(pyridin-2-yl)ethyl amino)ethyl)acetamide,a pseudo-mimic of human serum albumin
Authors:John N Zvimba  Graham E Jackson
Institution:University of Cape Town, Department of Chemistry, P/Bag Rondebosch 7701, South Africa
Abstract:The protonation equilibria of 2-amino-N-(2-oxo-2-(2-(pyridin-2-yl)ethyl amino)ethyl)acetamide (H2(556)–N]) and the complexation of this ligand with Cu(II) Ca(II), Zn(II) and Ni(II) have been studied by glass electrode potentiometry and UV–visible spectrophotometry. From pH ∼2.00–11.00, five models for Cu(II) with the following complexes; MLH, ML, MLH−1, MLH−2 and MLH−3 were generated and observed to describe the experimental data equally well as far as the statistical criteria were concerned. The MLH−2 complex predominates at physiological pH in all five models, while the MLH−1 complex species exists only at low concentration in two models. The coordination in the MLH−2 complex suggested the involvement of one amino, two deprotonated peptides and one pyridyl nitrogen atoms. Molecular mechanics (MM) calculations confirmed the MLH−2 complex as the most stable species. Speciation calculations, using a blood plasma model, predicted that the Cu(II)–H2(556)–N] complex is able to mobilize Cu(II). Octanol/water partition of CuLH−2 showed that 30% of the complex went into the octanol phase, hence promoting percutaneous absorption of copper. The complex is a poor mimic of native copper–zinc superoxide dismutase.
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