Synthesis and Evaluation of 99mTc-Labeled PSMA-Targeted Tracers Based on the Lys-Urea-Aad Pharmacophore for Detecting Prostate Cancer with Single Photon Emission Computed Tomography

  • Molecules. 2023 Jun 29;28(13):5120. doi: 10.3390/molecules28135120.
Kelly Lu  1 Chengcheng Zhang  1 Zhengxing Zhang  1 Hsiou-Ting Kuo  1 Nadine Colpo  1  2 François Bénard  1  2  3 Kuo-Shyan Lin  1  2  3
Affiliations
  • 1. Department of Molecular Oncology, BC Cancer Research Institute, Vancouver, BC V5Z 1L3, Canada.
  • 2. Department of Functional Imaging, BC Cancer Research Institute, Vancouver, BC V5Z 4E6, Canada.
  • 3. Department of Radiology, University of British Columbia, Vancouver, BC V5Z 1M9, Canada.
Abstract

Prostate-specific membrane antigen (PSMA) is a well-validated prostate Cancer marker but reported PSMA-targeted tracers derived from the Lys-urea-Glu pharmacophore including the clinically validated [99mTc]Tc-EDDA/HYNIC-iPSMA have high off-target uptake in kidneys, spleen, and salivary glands. In this study, we synthesized and evaluated three novel 99mTc-labeled PSMA-targeted tracers and investigated if the tracers derived from the Lys-urea-Aad pharmacophore could have minimized uptake in off-target organs/tissues. In vitro competition binding assays showed that compared with HYNIC-iPSMA, the three novel ligands had slightly weaker PSMA binding affinity (average Ki = 3.11 vs. 8.96-11.6 nM). Imaging and ex vivo biodistribution studies in LNCaP tumor-bearing mice showed that [99mTc]Tc-EDDA/HYNIC-iPSMA and the three novel tracers successfully visualized LNCaP tumor xenografts in SPECT images and were excreted mainly via the renal pathway. The average tumor uptake at 1 h post-injection varied from 5.40 to 18.8%ID/g, and the tracers derived from the Lys-urea-Aad pharmacophore had much lower uptake in the spleen and salivary glands. Compared with the clinical tracer [99mTc]Tc-EDDA/HYNIC-iPSMA, the Lys-urea-Aad-derived [99mTc]Tc-EDDA-KL01127 had lower background uptake and superior tumor-to-background contrast ratios and is therefore promising for clinical translation to detect prostate Cancer lesions with SPECT.

Keywords
HYNIC; molecular imaging; prostate-specific membrane antigen (PSMA); single photon emission computed tomography (SPECT); technetium-99m.
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