Schreck MV, Burgard C, Schmidtke A, Hierlmeier I, Stemler T, Maus S, Rosar F, Jung M, Speicher A, Ezziddin S, Holland JP, Bartholomä MD (2023)
Publication Type: Journal article
Publication year: 2023
Book Volume: 20
Pages Range: 6463-6473
Journal Issue: 12
DOI: 10.1021/acs.molpharmaceut.3c00852
The gastrin-releasing peptide receptor (GRPr) is overexpressed in various cancer types including prostate and breast carcinomas, making it an attractive target for molecular imaging and therapy. In this work, we designed a novel GRPr antagonistic probe comprising metal chelator NODIA-Me. This 1,4,7-triazacyclononane-based chelator forms positively charged metal complexes due to its neutral methylimidazole arms. Because a positive charge at the N-terminus of GRPr conjugates is responsible for high receptor affinity as exemplified by the current gold standard DOTA-RM2, we investigated if a positively charged radiometal complex can be used as a pharmacokinetic modifier to also produce high-affinity GRPr conjugates. In this respect, the bioconjugate NODIA-Me-Ahx-JMV594 was prepared by a combination of solid-phase peptide synthesis and solution-based reactions in a 94% yield. Radiolabeling provided the 68Ga-labeled conjugate in radiochemical yields of >95% and radiochemical purities of >98% with mean molar activities of A
APA:
Schreck, M.V., Burgard, C., Schmidtke, A., Hierlmeier, I., Stemler, T., Maus, S.,... Bartholomä, M.D. (2023). Radiometal Complexes as Pharmacokinetic Modifiers: A Potent 68Ga-Labeled Gastrin-Releasing Peptide Receptor Antagonist Based on the Macrocyclic Metal Chelator NODIA-Me. Molecular Pharmaceutics, 20(12), 6463-6473. https://doi.org/10.1021/acs.molpharmaceut.3c00852
MLA:
Schreck, Moritz Valentin, et al. "Radiometal Complexes as Pharmacokinetic Modifiers: A Potent 68Ga-Labeled Gastrin-Releasing Peptide Receptor Antagonist Based on the Macrocyclic Metal Chelator NODIA-Me." Molecular Pharmaceutics 20.12 (2023): 6463-6473.
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