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Department of Energy Science and Engineering
Electrochemistry Laboratory for Sustainable Energy(ELSE)
1. Journal Articles
New Bifunctional Chelator for Cu-64-Immuno-Positron Emission Tomography
Pandya, Darpan N.
;
Bhatt, Nikunj
;
Dale, Ajit V.
;
Kim, Jung Young
;
Lee, Hochun
;
Ha, Yeong Su
;
Lee, Ji-Eun
;
An, Gwang Il
;
Yoo, Jeongsoo
Department of Energy Science and Engineering
Electrochemistry Laboratory for Sustainable Energy(ELSE)
1. Journal Articles
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Title
New Bifunctional Chelator for Cu-64-Immuno-Positron Emission Tomography
Issued Date
2013-08
Citation
Pandya, Darpan N. (2013-08). New Bifunctional Chelator for Cu-64-Immuno-Positron Emission Tomography. Bioconjugate Chemistry, 24(8), 1356–1366. doi: 10.1021/bc400192a
Type
Article
Keywords
BRIDGED MACROCYCLIC CHELATORS
;
IN-VIVO BEHAVIOR
;
MONOCLONAL-ANTIBODIES
;
COPPER-64 RADIOPHARMACEUTICALS
;
BIOLOGICAL EVALUATION
;
KINETIC INERTNESS
;
IMMUNO-PET
;
COMPLEXES
;
CANCER
;
DERIVATIVES
ISSN
1043-1802
Abstract
A new tetraazamacrocyclic bifunctional chelator, TE2A-Bn-NCS, was synthesized in high overall yield from cyclam. An extra functional group (NCS) was introduced to the N-atom of TE2A for specific conjugation with antibody. The Cu complex of TE2A-Bn-NCS showed high kinetic stability in acidic decomplexation and cyclic voltammetry studies. X-ray structure determination of the Cu-TE2A-Bn-NH2 complex confirmed octahedral geometry, in which copper atom is strongly coordinated by four macrocyclic nitrogens in equatorial positions and two carboxylate oxygen atoms occupy the elongated axial positions. Trastuzumab was conjugated with TE2A-Bn-NCS and then radiolabeled with 64Cu quantitatively at room temperature within 10 min. Biodistribution studies showed that the 64Cu-labeled TE2A-Bn-NCS-trastuzumab conjugates maintain high stability in physiological conditions, and NIH3T6.7 tumors were clearly visualized up to 3 days by 64Cu-immuno-positron emission tomography imaging in animal models. © 2013 American Chemical Society.
URI
http://hdl.handle.net/20.500.11750/3216
DOI
10.1021/bc400192a
Publisher
American Chemical Society
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Department of Energy Science and Engineering
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