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Proceedings of the National Academy of Sciences of the United States of America|September 20, 2000
Microbial iron transport via a siderophore shuttle: a membrane ion transport paradigmA Stintzi, C Barnes, J Xu, et al.Biochemical and Biophysical Research Communications|June 29, 1984
Hydroxamate siderophore mediated iron uptake in E. coli: stereospecific recognition of ferric rhodotorulic acidB F Matzanke, G I Müller, K N RaymondBiochimica Et Biophysica Acta|May 29, 1981
Ferric ion sequestering agents: kinetics of iron release from ferritin to catechoylamidesT P Tufano, V L Pecoraro, K N RaymondBiochimica Et Biophysica Acta|August 31, 1988
The spectroelectrochemical determination of the reduction potential of diferric serum transferrinS A Kretchmar, Z E Reyes, K N RaymondHealth Physics|June 1, 1997
New agents for in vivo chelation of uranium(VI): efficacy and toxicity in mice of multidentate catecholate and hydroxypyridinonate ligandsP W Durbin, B Kullgren, J Xu, et al.International Journal of Radiation Biology|June 1, 1993
Early chelation therapy for injected Pu-238 and Am-241 in the rat: comparison of 3,4,3-LIHOPO, DFO-HOPO, DTPA-DX, DTPA and DFOAV Volf, R Burgada, K N Raymond, et al.International Journal of Radiation Biology|March 15, 2000
Multidentate hydroxypyridinonate ligands for Pu(IV) chelation in vivo: comparative efficacy and toxicity in mouse of ligands containing 1,2-HOPO or Me-3,2-HOPOP W Durbin, B Kullgren, J Xu, et al.International Journal of Radiation Biology|July 1, 1996
Treatment with 3,4,3-LIHOPO of simulated wounds contaminated with plutonium and americium in ratV Volf, R Burgada, K N Raymond, et al.Journal of Bacteriology|January 1, 1983
Iron supply to Escherichia coli by synthetic analogs of enterochelinS Heidinger, V Braun, V L Pecoraro, et al.Inorganic Chemistry|December 12, 2001
6-carboxamido-5,4-hydroxypyrimidinones: a new class of heterocyclic ligands and their evaluation as gadolinium chelating agentsC J Sunderland, M Botta, S Aime, et al.Pageof 6