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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >In vivo behavior of copper-64-labeled methanephosphonate tetraaza macrocyclic ligands
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In vivo behavior of copper-64-labeled methanephosphonate tetraaza macrocyclic ligands

机译:铜64标记的甲膦酸酯四氮杂大环配体的体内行为

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Copper64 (T_(1/2) = 12.7 h; β~+: 0.653 MeV, 17.4%; β~-: 0.578 MeV, 39%) is produced in a biomedical cyclotron and has applications in both imaging and therapy. Macrocyclic chelators are widely used as bifunctional chelators to bind copper radionuclides to antibodies and peptides owing to their relatively high kinetic stability. In this paper, we evaluated three tetraaza macrocyclic ligands with two, three, and four pendant methanephosphonate functional groups. DO2P [1,4,7,10-tetraazacyclododecane-1,7-di(methanephosphonic acid)], DO3P (1,4,7,10-tetraazacyclododecane-1,4,7-tri(methanephosphonic acid)], and DOTP [1,4,7,10-tetraazacyclododecane-1,4,7,10-tetra(methanephosphonic acid)] were all radiolabeled with ~(64)Cu in high radiochemical yields. Copper-64-labeled DO2P and DOTP were highly stable in rat serum out to 24 h, while ~(64)Cu-DO3P remained 73% intact, with the remainder possibly forming a ~(64)Cu 2DO3P dimer by 24 h. The biodistribution experiments were performed in normal Sprague-Dawley rats. Of the three complexes, ~(64)CuDO2P demonstrated the most optimal clearance through the blood and liver. Copper-64-DO3P and ~(64)Cu-DOTP exhibited higher liver uptake and longer retention of liver activity, possibly because of the large negative charge of the complexes under physiological conditions. All three ~(64)Cu-labeled complexes showed high accumulation in bone, likely due to the binding of the methanephosphonate groups to hydroxyapatite. These results suggest that this series of methanephosphonate macrocyclic ligands may be useful as potential bone-imaging agents. The thermodynamic stability constants of the Cu(II) complexes with these three ligands were determined, and were found to be significantly higher than those of their acetate analogues. The Cu(II)-DO2P complex exhibited the highest stability constant among divalent transition metal ion DO2P complexes. Metabolism studies of ~(64)Cu-DO2P in rat liver suggest that the DO2P ligand may be used as a bifunctional chelator for copper radionuclides in radiodiagnostic or radiotherapeutic studies.
机译:铜64(T_(1/2)= 12.7 h;β〜+:0.653 MeV,17.4%;β〜-:0.578 MeV,39%)是在生物医学回旋加速器中生产的,在成像和治疗中都有应用。大环螯合剂由于其较高的动力学稳定性而被广泛用作双功能螯合剂,以将铜放射性核素与抗体和肽结合。在本文中,我们评估了具有两个,三个和四个侧基甲膦酸酯官能团的三个四氮杂大环配体。 DO2P [1,4,7,10-四氮杂环十二烷-1,7-二(甲烷膦酸)],DO3P(1,4,7,10-四氮杂环十二烷-1,4,7-三(甲烷膦酸)]和DOTP [1,4,7,10-四氮杂十二烷-1,4,7,10-四(甲烷膦酸)]均用〜(64)Cu进行放射性标记,放射化学产率高,铜64标记的DO2P和DOTP高度稳定。在大鼠血清中直至24 h,〜(64)Cu-DO3P仍保持73%完整,其余可能在24 h时形成〜(64)Cu 2DO3P二聚体,并在正常Sprague-Dawley大鼠中进行了生物分布实验。在这三种复合物中,〜(64)CuDO2P表现出通过血液和肝脏的最佳清除率; Copper-64-DO3P和〜(64)Cu-DOTP表现出更高的肝脏吸收能力和更长的肝脏活性保留时间,可能是因为这三种〜(64)Cu标记的配合物在骨骼中均显示高积累,这可能是由于甲膦酸酯基团与羟基磷灰石的结合所致。这些结果表明,该系列的甲膦酸酯大环配体可用作潜在的骨显像剂。测定了具有这三个配体的Cu(II)配合物的热力学稳定性常数,发现其明显高于其乙酸盐类似物。在二价过渡金属离子DO2P配合物中,Cu(II)-DO2P配合物表现出最高的稳定性常数。大鼠肝脏中〜(64)Cu-DO2P的代谢研究表明,DO2P配体可在放射诊断或放射治疗研究中用作铜放射性核素的双功能螯合剂。

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