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W Earley

Publications and source records attributed to W Earley.

3 recordsLinked to original sources

Dimeric W3SO3 cluster complexes: synthesis, characterization, and potential applications as X-ray contrast agents.

Our continued research on the use of heavy metal cluster complexes as a new class of X-ray contrast agents in medical diagnostic imaging is described. A series of 2:3 cluster-ligand complexes, [(W(IV)3SO3)2L3]4- (L = linear polyaminopolycarboxylate ligands), were isolated from the reaction of aqua ion [W(IV)3SO3(H2O)9]4- (prepared in large quantities through an improved literature process) with respective ligands in refluxing DMF. The salts of [(W(IV)3SO3)2L3]4- complex anions were fully characterized using routine techniques such as elemental analysis, MS, HPLC, UV-vis, IR, and NMR. The solid structures of two complex anions, [(W(IV)3SO3)2(PDTA)3]4- and [(W(IV)3SO3)2(HO-PDTA)3]4-, were determined by X-ray crystallography. They are the first examples wherein two W(IV)3SO3 clusters are complexed and linked by three ligands that contain two terminal iminodiacetate (bis-IDA) groups. Complexation of the unstable aqua ion [W(IV)3SO3(H2O)9]4- with ligands has imparted desired biological compatibility to the tungsten metal cluster. These complexes are stable and highly soluble in H2O. The potential utility of such tungsten cluster complexes as X-ray contrast agents was evaluated in both in vitro and in vivo animal studies. In addition, the syntheses of several new linear polyaminopolycarboxylate ligands used in this study are reported.

Animals↗

Comparison of native matrix metalloproteinases and their recombinant catalytic domains using a novel radiometric assay.

A novel radiometric assay was developed for human fibroblast collagenase (matrix metalloproteinase-1, MMP-1), stromelysin (MMP-3), and their recombinant catalytic domains. Using this assay we were able to compare the native MMPs with the respective catalytic domains in terms of inhibitor affinities and peptide hydrolysis. The assay works on the same principle as an assay developed for carboxypeptidase (Rossier et al., Anal. Biochem. 1989, 178, 27-31) and is based on a synthetic peptide substrate, [1-benzoyl-14C]benzoyl-Pro-Leu-Ala-Leu-Trp- NH(CH2)4N(CH3)2(bnzPLALW-NX). The generation of product is measured by selective solvent extraction of radioactive product directly into scintillation cocktail; the entire assay, including the radioactivity measurement, is completed in a single 1-ml tube (96-well format) without removal or transfer of phases. Results of steady-state measurements demonstrated that peptide hydrolysis follows Michaelis-Menten kinetics with the fibroblast MMPs and their C-terminal deleted forms. The kinetic constants for hydrolysis of bnz-PLALW-NX, and for inhibition by actinonin, a natural peptide-hydroxamate, are essentially the same for the native and the C-terminally deleted MMPs.

Binding Sites↗