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Article

Influence of Molecular Design on the Tumor Targeting and Biodistribution of PSMA-Binding Tracers Labeled with Technetium-99m

by
Ekaterina Bezverkhniaia
1,
Panagiotis Kanellopoulos
1,
Ulrika Rosenström
1,
Vladimir Tolmachev
2 and
Anna Orlova
1,3,*
1
Department of Medicinal Chemistry, Uppsala University, 751 23 Uppsala, Sweden
2
Department of Immunology, Genetics and Pathology, Uppsala University, 752 37 Uppsala, Sweden
3
Science for Life Laboratory, Uppsala University, 752 37 Uppsala, Sweden
*
Author to whom correspondence should be addressed.
Int. J. Mol. Sci. 2024, 25(7), 3615; https://doi.org/10.3390/ijms25073615
Submission received: 29 February 2024 / Revised: 21 March 2024 / Accepted: 22 March 2024 / Published: 23 March 2024
(This article belongs to the Special Issue Prostate Cancer: Novel Research and Innovative Therapeutic Strategies)

Abstract

Previously, we designed the EuK-based PSMA ligand BQ0413 with an maE3 chelator for labeling with technetium-99m. It showed efficient tumor targeting, but our preclinical data and preliminary clinical results indicated that the renal excretion levels need to be decreased. We hypothesized that this could be achieved by a decrease in the ligand’s total negative charge, achieved by substituting negatively charged glutamate residues in the chelator with glycine. The purpose of this study was to evaluate the tumor targeting and biodistribution of two new PSMA inhibitors, BQ0411 and BQ0412, compared to BQ0413. Conjugates were radiolabeled with Tc-99m and characterized in vitro, using PC3-pip cells, and in vivo, using NMRI and PC3-pip tumor-bearing mice. [99mTc]Tc-BQ0411 and [99mTc]Tc-BQ0412 demonstrated PSMA-specific binding to PC3-pip cells with picomolar affinity. The biodistribution pattern for the new conjugates was characterized by rapid excretion. The tumor uptake for [99mTc]Tc-BQ0411 was 1.6-fold higher compared to [99mTc]Tc-BQ0412 and [99mTc]Tc-BQ0413. [99mTc]Tc-BQ0413 has demonstrated predominantly renal excretion, while the new conjugates underwent both renal and hepatobiliary excretion. In this study, we have demonstrated that in such small targeting ligands as PSMA-binding EuK-based pseudopeptides, the structural blocks that do not participate in binding could have a crucial role in tumor targeting and biodistribution. The presence of a glycine-based coupling linker in BQ0411 and BQ0413 seems to optimize biodistribution. In conclusion, the substitution of amino acids in the chelating sequence is a promising method to alter the biodistribution of [99mTc]Tc-labeled small-molecule PSMA inhibitors. Further improvement of the biodistribution properties of BQ0413 is needed.
Keywords: prostate cancer; prostate-specific membrane antigen; PSMA; technetium-99m; coupling linker; BQ0411; BQ0412; single-photon emission computed tomography prostate cancer; prostate-specific membrane antigen; PSMA; technetium-99m; coupling linker; BQ0411; BQ0412; single-photon emission computed tomography

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MDPI and ACS Style

Bezverkhniaia, E.; Kanellopoulos, P.; Rosenström, U.; Tolmachev, V.; Orlova, A. Influence of Molecular Design on the Tumor Targeting and Biodistribution of PSMA-Binding Tracers Labeled with Technetium-99m. Int. J. Mol. Sci. 2024, 25, 3615. https://doi.org/10.3390/ijms25073615

AMA Style

Bezverkhniaia E, Kanellopoulos P, Rosenström U, Tolmachev V, Orlova A. Influence of Molecular Design on the Tumor Targeting and Biodistribution of PSMA-Binding Tracers Labeled with Technetium-99m. International Journal of Molecular Sciences. 2024; 25(7):3615. https://doi.org/10.3390/ijms25073615

Chicago/Turabian Style

Bezverkhniaia, Ekaterina, Panagiotis Kanellopoulos, Ulrika Rosenström, Vladimir Tolmachev, and Anna Orlova. 2024. "Influence of Molecular Design on the Tumor Targeting and Biodistribution of PSMA-Binding Tracers Labeled with Technetium-99m" International Journal of Molecular Sciences 25, no. 7: 3615. https://doi.org/10.3390/ijms25073615

APA Style

Bezverkhniaia, E., Kanellopoulos, P., Rosenström, U., Tolmachev, V., & Orlova, A. (2024). Influence of Molecular Design on the Tumor Targeting and Biodistribution of PSMA-Binding Tracers Labeled with Technetium-99m. International Journal of Molecular Sciences, 25(7), 3615. https://doi.org/10.3390/ijms25073615

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