| Literature DB >> 26583317 |
Gyula Tircsó1,2,3, Martín Regueiro-Figueroa4, Viktória Nagy5, Zoltán Garda5, Tamás Garai5, Ferenc Krisztián Kálmán5, David Esteban-Gómez4, Éva Tóth6, Carlos Platas-Iglesias7.
Abstract
A highly rigid open-chain octadentate ligand (H4 cddadpa) containing a diaminocylohexane unit to replace the ethylenediamine bridge of 6,6'-[(ethane-1,2 diylbis{(carboxymethyl)azanediyl})bis(methylene)]dipicolinic acid (H4 octapa) was synthesized. This structural modification improves the thermodynamic stability of the Gd(3+) complex slightly (log KGdL =20.68 vs. 20.23 for [Gd(octapa)](-) ) while other MRI-relevant parameters remain unaffected (one coordinated water molecule; relaxivity r1 =5.73 mm(-1) s(-1) at 20 MHz and 295 K). Kinetic inertness is improved by the rigidifying effect of the diaminocylohexane unit in the ligand skeleton (half-life of dissociation for physiological conditions is 6 orders of magnitude higher for [Gd(cddadpa)](-) (t1/2 =1.49×10(5) h) than for [Gd(octapa)](-) . The kinetic inertness of this novel chelate is superior by 2-3 orders of magnitude compared to non-macrocyclic MRI contrast agents approved for clinical use.Entities:
Keywords: NMR imaging; contrast agents; coordination compounds; gadolinium; lanthanides
Year: 2016 PMID: 26583317 DOI: 10.1002/chem.201503836
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236