Literature DB >> 32960990

18 F-labeled 1,2,3-triazole-linked Glu-urea-Lys-based PSMA ligands have good pharmacokinetic properties for positron emission tomography imaging of prostate cancer.

Byoung Se Lee1, So Young Chu1, Woon Jung Jung1, Hyeon Jin Jeong1, Kyongkyu Lee1, Min Hwan Kim1, Mi Hyun Kim1, Dae Yoon Chi1,2, Heesu Ahn3, Yong Jin Lee3, Kyo Chul Lee3, Sang Moo Lim4.   

Abstract

BACKGROUND: Prostate-specific membrane antigen (PSMA) is increasingly recognized as an excellent target for prostate cancer imaging and therapy. Finding compounds with a high target-to-nontarget ratio are an important challenge in the development of positron emission tomography (PET) imaging agents. In this study, we attempted to find a suitable compound from a simply-synthesized compound library.
METHOD: 18 F-labeling was achieved in a two-step synthesis consisting of [18 F]fluorination of azido sulfonates followed by copper(I)-catalyzed click ligation. In vitro binding experiment and in vivo studies were carried out using isogenic PSMA+ PC3-PIP and PSMA- PC3-flu cells and 22RV1 cells. [125 I]MIP-1095 was used to measure the binding affinities of compounds through a competitive binding assay, and [18 F]DCFPyL was used for a comparative assessment of compounds. Radiation dosimetry data were obtained using OLINDA/EXM software.
RESULTS: Nine novel PSMA ligands were synthesized by the combination of three azido compounds and three terminal acetylene-containing Glu-urea-Lys compounds. Among them, compound 6f having a pyridine moiety showed a high binding affinity of 6.51 ± 0.19 nM (Ki ). 18 F-labeled compounds were obtained at moderate yields within 70 to 75 minutes (including high-performance liquid chromatography purification). Compound [18 F]6c had the lowest log P of -2.693. MicroPET/computed tomography (CT) images were acquired from 22RV1 cell xenograft mice after injecting [18 F]6c, [18 F]6f, and [18 F]6i. Additional microPET/CT experiments of [18 F]6c and [18 F]6f were performed using PSMA+ PC3-PIP and PSMA- PC3-flu cell-bearing mice. [18 F]6c was selected for further studies because it was found to have high uptake in tumors and rapid renal clearance, resulting in great tumor-to-nontumor ratios and distinct tumor images with very low background activity. Human dosimetry estimation of [18 F]6c using OLINDA/EXM software was calculated, resulting in an effective dose of 4.35 × 10-3  mSv/MBq.
CONCLUSIONS: [18 F]6c showed significant tumor uptake, a high tumor-to-nontumor ratio, and good radiation dosimetry results, suggesting further development as a potential diagnostic PET agent for prostate cancer.
© 2020 Wiley Periodicals LLC.

Entities:  

Keywords:  PET radiopharmaceuticals; PSMA; click chemistry; rapid renal clearance; tumor-to-background ratio

Year:  2020        PMID: 32960990     DOI: 10.1002/pros.24062

Source DB:  PubMed          Journal:  Prostate        ISSN: 0270-4137            Impact factor:   4.104


  1 in total

Review 1.  KSNM60 in Non-thyroidal Radionuclide Therapy: Leaping into the Future.

Authors:  Byung Hyun Byun; Myoung Hyoun Kim; Yeon-Hee Han; Hwan-Jeong Jeong
Journal:  Nucl Med Mol Imaging       Date:  2021-08-23
  1 in total

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