Author/Authors :
Mosayebnia, Mona Department of Radiopharmacy - Faculty of Pharmacy - Tehran University of Medical Sciences, Tehran, Iran , Rezaeianpour, Sedigheh Phytochemistry Research Center - Shahid Behesti University of Medical Sciences, Tehran, Iran , Rikhtechi, Pedram Department of Pharmaceutical Chemistry and Radiopharmacy - School of Pharmacy - Shahid Behesti University of Medical Sciences, Tehran, Iran , Hajimahdi, Zahra Department of Pharmaceutical Chemistry and Radiopharmacy - School of Pharmacy - Shahid Behesti University of Medical Sciences, Tehran, Iran , Beiki, Davood Research Center for Nuclear Medicine - Tehran University of Medical Sciences, Tehran, Iran , Kobarfard, Farzad Department of Pharmaceutical Chemistry and Radiopharmacy - School of Pharmacy - Shahid Behesti University of Medical Sciences, Tehran, Iran , sabzevari, Omid Department of Radiopharmacy - Faculty of Pharmacy - Tehran University of Medical Sciences, Tehran, Iran , Amini, Mohsen Department of Medicinal Chemistry - and Drug Design and Development Research Center - Faculty of Pharmacy - Tehran University of Medical Sciences, Tehran, Iran , Abdi, Khosrou Department of Radiopharmacy - Faculty of Pharmacy - Tehran University of Medical Sciences, Tehran, Iran , Shahhosseini, Soraya Department of Pharmaceutical Chemistry and Radiopharmacy - School of Pharmacy - Shahid Behesti University of Medical Sciences, Tehran, Iran
Abstract :
The basic chemical structure of most prostate specific membrane antigen (PSMA) inhibitors
which are now in pre-clinical and clinical studies is Glu-Ureido-based peptides. Synthesis of
urea-based PSMA inhibitors includes two steps: 1- isocyanate intermediate formation and 2-
urea bond formation. In current methods, isocyanate is formed in liquid phase and then reacts
with amine existing in liquid phase or bound to solid phase for urea bond formation. In this
study, we developed a new facile method for formation of both isocyanate and urea on solid
phase under standard peptide coupling conditions. The solid phase-bound isocyanate served
as intermediate to form urea bond. To monitor reaction progress qualitative test (Kaiser Test)
and On-Bead FT-IR spectroscopy were used. The structure of Glutamate-Urea-Lysine (EUK)
was confirmed using LC-Mass and 1H-NMR. This novel method successfully was applied
to synthesize of another urea-based peptide containing a sequence of Glu-Urea-Lys (OMe)-
GABA-Tyr-Tyr-GABA and the bifunctional linker hydrazinonicotinamide (HYNIC) as well.
Keywords :
Isocyanate , solid phase , urea bond , Glutamate-Urea-Lysine , PSMA