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Inorganic Chemistry|January 16, 2003
Structurally reinforced tetraazamacrocyclic complexesP V Bernhardt, P C SharpeInorganic Chemistry|February 24, 2001
C-substituted macrocycles as candidates for radioimmunotherapyP V Bernhardt, P C SharpeInorganic Chemistry|April 13, 2001
Diverse solid-state and solution structures within a series of hexaamine dicopper(II) complexesP V BernhardtAnnals of Clinical Biochemistry|December 6, 2001
Biochemical detection and monitoring of alcohol abuse and abstinenceP C SharpeJournal of Biological Inorganic Chemistry : JBIC : a Publication of the Society of Biological Inorganic Chemistry|August 10, 1999
Crystal and molecular structure of 2-hydroxy-1-naphthaldehyde isonicotinoyl hydrazone (NIH) and its iron(III) complex: an iron chelator with anti-tumour activityD R Richardson, P V BernhardtThe Quarterly Journal of Medicine|November 1, 1993
Mean platelet volume in diabetes mellitusP C Sharpe, T TrinickJournal of Clinical Pathology|March 3, 2009
Paradoxical decreases in high-density lipoprotein cholesterol with fenofibrate: a quite common phenomenonG Magee, P C SharpeJournal of Clinical Pathology|November 29, 2005
Two cases of inflammatory muscle disease presenting with raised serum concentrations of troponin TJ S Hamilton, P C SharpeActa Crystallographica. Section C, Crystal Structure Communications|January 21, 2000
The biologically active iron chelators 2-pyridylcarboxaldehyde isonicotinoylhydrazone, 2-pyridylcarboxaldehyde benzoylhydrazone monohydrate and 2-furaldehyde isonicotinoylhydrazoneD R Richardson, E Becker, P V BernhardtJournal of Biological Inorganic Chemistry : JBIC : a Publication of the Society of Biological Inorganic Chemistry|November 20, 2001
Unprecedented oxidation of a biologically active aroylhydrazone chelator catalysed by iron(III): serendipitous identification of diacylhydrazine ligands with high iron chelation efficacyP V Bernhardt, P Chin, D R RichardsonPageof 4