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Chemical Research in Toxicology|November 1, 1991
Structure-activity relationships for in vivo cadmium mobilization by dithiocarbamates derived from lactose and maltotrioseM M Jones, P K Singh, S G James, et al.
Biophysical Journal|May 1, 1996
Vectorially oriented monolayers of detergent-solubilized Ca(2+) -ATPase from sarcoplasmic reticulumL A Prokop, R M Stongin, A B Smith, et al.
Biomedical Sciences Instrumentation|June 28, 2002
Salvaging legacy data: mapping an obsolete medical nomenclature to a modern oneL C Folk, A W Hahn, T B Patrick, et al.
Research Communications in Chemical Pathology and Pharmacology|February 1, 1984
Heterocyclic N-dithiocarboxylates as cadmium antagonists: 4-hydroxypiperidine- and 4-carboxamidopiperidine-N-dithiocarboxylateG R Gale, L M Atkins, A B Smith, et al.
Research Communications in Chemical Pathology and Pharmacology|October 1, 1990
Glutathione status, glutathione monoisopropyl ester, and cadmium metabolism in miceG R Gale, A B Smith, L M Atkins, et al.
Research Communications in Chemical Pathology and Pharmacology|February 1, 1986
Comparative antidotal effects of diethyldithiocarbamate, dimercaptosuccinate, and diethylenetriaminepentaacetate against cadmium-induced testicular toxicity in miceE M Walker, G R Gale, E P Fody, et al.
Science (New York, N.Y.)|April 16, 1993
Structure of langmuir-blodgett films of disk-shaped molecules determined by atomic force microscopyJ Y Josefowicz, N C Maliszewskyj, S H Idziak, et al.
Research Communications in Chemical Pathology and Pharmacology|September 1, 1991
Comparative iron mobilizing actions of deferoxamine, 1,2-dimethyl-3-hydroxypyrid-4-one, and pyridoxal isonicotinoyl hydrazone in iron hydroxamate-loaded miceG R Gale, W H Litchenberg, A B Smith, et al.
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