Publication Type Journal Article
Title Re(I) and Tc-99m(I) tricarbonyl complexes with ether-containing pyrazolyl-based chelators: Chemistry, biodistribution and metabolism
Authors Celia Fernandes Leonor Maria Lurdes Gano Isabel Santos Antonio Paulo
Groups IOARC
Journal JOURNAL OF ORGANOMETALLIC CHEMISTRY
Year 2014
Month June
Volume 760
Number
Pages 138-148
Abstract Tris(pyrazolyl) methane chelators, L1-L3, containing one or two ether groups at different positions of the azole rings, were synthesized and fully characterized. These chelators enabled the synthesis of fac[Tc-99m(CO)(3)\HC[4-(ROCH2) pz](3)\] \_ (R = Me (Tc1), Et (Tc2)) and fac-[Tc-99m(CO)(3)\HC[3,5-(EtOCH2)(2)pz](3)\](+) (Tc3) which were identified by HPLC in comparison with the rhenium counterparts. The evaluation of Tc1 -Tc3 in CD-1 mice has shown that the number and/ or nature of the ether groups greatly influence the biodistribution profile, pharmacokinetics and metabolic stability of these complexes. Tc1 and Tc2, bearing a unique ether substituent at the 4-position of the pyrazolyl ring, undergo metabolic transformation in vivo while Tc3 is not metabolized. The metabolization of Tc1 and Tc2 enhanced their rate of excretion but, most probably, also justify their negligible heart uptake in contrast with the high heart uptake of congener non-metabolizable complexes (Tc-99m-DMEOP and Tc-99m-TMEOP), which have recently emerged as potential myocardial imaging agents. The attempts made to identify the metabolites of Tc1 and Tc2 have shown that the metabolization of these compounds must involve the ether functions with probable formation of carboxylic acid derivatives. A comparative study with the congener fac-[Tc-99m(CO)(3)\[4-(MeOCH2)pz](CH2)(2)NH(CH2)(2)NH2\](+) (Tc6) led us to confirm the formation of such type of metabolites. In fact, Tc6 is also metabolized in mice with formation of fac-[Tc-99m(CO)(3)\[4-(HOCH2)pz](CH2)(2)NH(CH2)(2)NH2\](+) (Tc7) and fac-[Tc-99m(CO)(3)\[4-(HOOC) pz](CH2)(2)NH(CH2)(2)NH2\](+) (Tc8), which were chemically identified by HPLC in comparison with the Re congeners (Re7 and Re8). (C) 2013 Elsevier B.V. All rights reserved.
DOI http://dx.doi.org/10.1016/j.jorganchem.2013.11.013
ISBN
Publisher
Book Title
ISSN 0022-328X
EISSN 1872-8561
Conference Name
Bibtex ID ISI:000334295800020
Observations
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