4.3 Article

Rhemium-186-monoaminemonoamidedithiol-conjugated bisphosphonate derivatives for bone pain palliation

Journal

NUCLEAR MEDICINE AND BIOLOGY
Volume 33, Issue 4, Pages 513-520

Publisher

ELSEVIER SCIENCE INC
DOI: 10.1016/j.nucmedbio.2006.03.006

Keywords

rhenium-186; monoaminemonoamidedithiols; bisphosphonate; bone; palliation

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To develop a radiopharmaceutical for the palliation of painful bone metastases based on the concept of bifunctional radiopharmaceuticals, we synthesized a bisphosphonate derivative labeled with rhenium-186 (Re-186) that contains a hydroxyl group at the central carbon of its bisphosphonate structure, we attached a stable Re-186-MAMA chelate to the amino group of a 4-amino-butylidene-phosphonate derivative [N-[2-[[4-[(4-hydroxy-4,4-diphosphonobutyl)amino]-4-oxobutyl]-2-thioethylamino]acetyl]-2-aminoethanethiolate] oxorhenium (V) (Re-186-MAMA-HBP) and we investigated the effect of a hydroxyl group at the central carbon of its bisphosphonate structure on affinity for hydroxyapatite and on biodistribution by conducting a comparative study with [N-[2-[[3-(3,3-diphosphonopropylcarbamoyl)propyl]-2-thioethylamino]acetyl]-2-aminoethanethiolate] oxorhenium (V) (Re-186-MAMA-BP). The precursor of Re-186-MAMA-HBP, trityl (Tr)-MAMA-HBP, was obtained by coupling a Tr-MAMA derivative to 4-amino-1-hydroxybutylidene-1,1-bisphosphonate. Re-186-MAMA-HBP was prepared by a reaction with (ReO4-)-Re-186 and SnCl2 in citrate buffer after the deprotection of the Tr groups of Tr-MAMA-HBP. After reversed-phase high-performance liquid chromatography, Re-186-MAMA-HBP had a radiochemical purity of over 95%. Compared with Re-186-MAMA-BP, Re-186-MAMA-HBP showed a greater affinity for hydroxyapatite beads in vitro and accumulated a significantly higher level in the femur in vivo. Thus, the introduction of a hydroxyl group into Re-186 complex-conjugated bisphosphonates would be effective in enhancing accumulation in bones. These findings provide useful information oil the design of bone-seeking therapeutic radiopharmaceuticals. (c) 2006 Elsevier Inc. All rights reserved.

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