AI Article Synopsis

  • Researchers studied Co(II) and Ni(II) complexes with two types of tri-pyridine-based ligands (TDTA and TMTP) to explore their potential as paraCEST MRI contrast agents.
  • The TDTA ligand showed passive behavior with its hydroxy groups but active amide groups, while the TMTP ligand exhibited strong CEST signals due to all three amide groups participating in the exchange process.
  • The study included assessing the stability of these complexes in various conditions and methods to measure their thermodynamic properties, revealing insights into their structural geometries and capabilities for imaging applications.

Article Abstract

Co(II) and Ni(II) complexes of two tri-pyridine-based ligands with two hydroxy and two amide exchangeable protons (TDTA) and with six amide exchangeable protons (TMTP) were investigated for application as paraCEST-based magnetic resonance imaging (MRI) contrast agents. The two hydroxy groups present in the TDTA ligand were found to be passive while the amide group was active towards the CEST process. In the case of the Co(II) and Ni(II) complexes of the TMTP ligand, all three coordinated amide groups participated in the exchange process, and excellent CEST signals were observed. The X-ray structure of the four complexes revealed the seven-coordinate geometry of Co(II) complexes and the six-coordinate geometry of Ni(II) complexes. The presence of amide protons and hydroxy protons in the complexes was detected by the NMR method. The stability of the complexes in solution at high temperatures, in different pH ranges and acidic conditions, in the presence of competing cations, and biologically relevant anions was investigated. Potentiometric titrations were carried out to determine the ligand's protonation constants and the complexes' thermodynamic stability constant at 25.0 °C and = 0.15 mol L NaClO. ParaCEST studies of [Co(TMTP)] and [Ni(TMTP)] at variable pH and variable pulse power are highlighted.

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Source
http://dx.doi.org/10.1039/d3dt01422cDOI Listing

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