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PIDAZTA: Structurally Constrained Chelators for the Efficient Formation of Stable Gallium-68 Complexes at Physiological pH.

Edit FarkasAdrienn VágnerRoberto NegriLuciano LattuadaImre TóthValentina ColomboDavid Esteban-GómezCarlos Platas-IglesiasJohannes NotniZsolt BaranyaiGiovanni Battista Giovenzana
Published in: Chemistry (Weinheim an der Bergstrasse, Germany) (2019)
Two structurally constrained chelators based on a fused bicyclic scaffold, 4-amino-4-methylperhydro-pyrido[1,2-a][1,4]diazepin-N,N',N'-triacetic acids [(4R*,10aS*)-PIDAZTA (L1) and (4R*,10aR*)-PIDAZTA (L2)], were designed for the preparation of GaIII -based radiopharmaceuticals. The stereochemistry of the ligand scaffold has a deep impact on the properties of the complexes, with unexpected [Ga(L2)OH] species being superior in terms of both thermodynamic stability and inertness. This peculiar behavior was rationalized on the basis of molecular modeling and appears to be related to a better fit in size of GaIII into the cavity of L2. Fast and efficient formation of the GaIII chelates at room temperature was observed at pH values between 7 and 8, which enables 68 Ga radiolabeling under truly physiological conditions (pH 7.4).
Keyphrases
  • room temperature
  • pet ct
  • tissue engineering
  • ionic liquid
  • mass spectrometry
  • molecularly imprinted
  • simultaneous determination