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2,3-dihydroxyterephthalamide
Known as:
2,3-DHPA
National Institutes of Health
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Related topics
Related topics
2 relations
Broader (2)
Amides
Phthalic Acids
Papers overview
Semantic Scholar uses AI to extract papers important to this topic.
2007
2007
Terephthalamide-containing ligands: fast removal of iron from transferrin
R. Abergel
,
K. Raymond
JBIC Journal of Biological Inorganic Chemistry
2007
Corpus ID: 20706644
The mechanism and effectiveness of iron removal from transferrin by three series of new potential therapeutic iron sequestering…
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2006
2006
Synthesis and thermodynamic evaluation of mixed hexadentate linear iron chelators containing hydroxypyridinone and terephthalamide units.
R. Abergel
,
K. Raymond
Inorganic chemistry
2006
Corpus ID: 41488917
A series of new linear iron chelators containing hydroxypyridinone and terephthalamide (TAMmeg) moieties have been prepared. All…
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2006
2006
Terephthalamide-containing analogues of TREN-Me-3,2-HOPO.
K. M. C. Jurchen
,
K. Raymond
Inorganic chemistry
2006
Corpus ID: 20936814
A series of terephthalamide-containing analogues based on TREN-Me-3,2-HOPO have been prepared. These analogues contain one, two…
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2006
2006
A bidentate terephthalamide ligand, TAMmeg, as an entry into terephthalamide-containing therapeutic iron chelating agents.
K. M. C. Jurchen
,
K. Raymond
Inorganic chemistry
2006
Corpus ID: 13004285
A new bidentate 2,3-dihydroxyterephthalamide ligand, 2,3-dihydroxy-N,N'-bis(2-methoxyethyl)terephthalamide (TAMmeg), has been…
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2004
2004
Characterization of 2,3-dihydroxyterephthalamides as M(IV) chelators.
C. Gramer
,
K. Raymond
Inorganic chemistry
2004
Corpus ID: 13930808
The ligand N,N'-diethyl-2,3-dihydroxyterephthalamide (ETAM) has been characterized as a chelator for Zr(IV), Ce(IV), and Th(IV…
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2004
2004
Octadentate Ligands Containing 2,3-Dihydroxybenzamide and 2,3-Dihydroxyterephthalamide Coordinating Subunits on a Tetrapodal Amine Backbone for Chelation of Actinides
Jide Xu
,
A. Gorden
,
K. Raymond
2004
Corpus ID: 36023452
The linear octadentate ligand 3,4,3-LICAM(C) (2) is one of the most effective chelating agents for Pu IV that is not acutely…
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2004
2004
Toward optimized high-relaxivity MRI agents: thermodynamic selectivity of hydroxypyridonate/catecholate ligands.
V. Pierre
,
M. Melchior
,
D. Doble
,
K. Raymond
Inorganic chemistry
2004
Corpus ID: 22689840
The thermodynamic selectivity for Gd(3+) relative to Ca(2+), Zn(2+), and Fe(3+) of two ligands of potential interest as magnetic…
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Highly Cited
2003
Highly Cited
2003
Toward optimized high-relaxivity MRI agents: the effect of ligand basicity on the thermodynamic stability of hexadentate hydroxypyridonate/catecholate gadolinium(III) complexes.
D. Doble
,
M. Melchior
,
+4 authors
K. Raymond
Inorganic chemistry
2003
Corpus ID: 35971674
The thermodynamic stabilities of the Gd(III) complexes of five hexadentate ligands, which incorporate the 2,3…
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Highly Cited
2000
Highly Cited
2000
Syntheses and relaxation properties of mixed gadolinium hydroxypyridinonate MRI contrast agents.
S. Cohen
,
J. Xu
,
+4 authors
S. Aime
Inorganic chemistry
2000
Corpus ID: 23650297
The tripodal ligand tris[(3-hydroxy-1-methyl-2-oxo-1,2- didehydropyridine-4-carboxamido)ethyl]amine (TREN-Me-3,2-HOPO) forms a…
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2000
2000
Mixed hydroxypyridinonate ligands as iron chelators.
S. Cohen
,
B. O'sullivan
,
K. Raymond
Inorganic chemistry
2000
Corpus ID: 31632040
New ligands based on hydroxypyridinonate (HOPO) and other bidentate ligands are explored as iron(III) sequestering agents. These…
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