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In vitro study of the insulin-mimetic behaviour of vanadium(IV, V) coordination compounds
Authors:Dieter Rehder  João Costa Pessoa  Carlos F Geraldes  Margarida M Castro  Themistoklis Kabanos  Tamás Kiss  Beate Meier  Giovanni Micera  Lage Pettersson  Maria Rangel  Athanasios Salifoglou  Iztok Turel  Dongren Wang
Institution:Institute of Inorganic and Applied Chemistry, University of Hamburg, 20146 Hamburg, Germany. rehder@xray.chemie.uni-hamburg.de
Abstract:A representative set of vanadium(IV and V) compounds in varying coordination environments has been tested in the concentration range 1 to 10(-6) mM, using transformed mice fibroblasts (cell line SV 3T3), with respect to their short-term cell toxicity (up to 36 hours) and their ability to stimulate glucose uptake by cells. These insulin-mimetic tests have also been carried out with non-transformed human fibroblasts (cell line F26). The compounds under investigation comprise established insulin-mimetic species such as vanadate (H(2)VO(4)](-)), VO(acetylacetonate)(2)], VO(2)(dipicolinate)](-) and VO(maltolate)(2)], and new systems and coordination compounds containing OO, ON, OS, NS and ONS donor atom sets. A vitality test assay, measuring the reduction equivalents released in the mitochondrial respiratory chain by intracellular glucose degradation, is introduced and the results are counter-checked with (3)H-labelled glucose. Most compounds are toxic at the 1 mM concentration level, and most compounds are essentially non-toxic and about as effective as or more potent than insulin at concentrations of 0.01 mM and below. V(V) compounds tend to be less toxic than V(IV)compounds, and complexes containing thio functional ligands are somewhat more toxic than others. Generally, ON ligation is superior in insulin-mimetic efficacy to OO or O/ NS coordination, irrespective of the vanadium oxidation state. There is, however, no striking correlation between the nature of the ligand systems and the insulin-mimetic potency in these cell culture tests, encompassing 41 vanadium compounds, the results on 22 of which are reported in detail here. The syntheses and characteristics of various new compounds are provided together with selected speciation results. The crystal and molecular structures of VO(naph-tris)](2)] where naph-tris is the Schiff base formed between o-hydroxynaphthaldehyde and tris(hydroxymethyl)amine] are reported. Electronic supplementary material to this paper can be obtained by using the Springer Link server located at http://dx.doi.org/10.1007/s00775-001-0311-5.
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