化学
体内分布
双功能
螯合作用
生物结合
配体(生物化学)
镥
电位滴定法
质谱法
离子
组合化学
放射化学
无机化学
钇
有机化学
体外
色谱法
生物化学
氧化物
受体
催化作用
作者
Brett A. Vaughn,Angus J. Koller,Zhihengyu Chen,Shin Hye Ahn,C. Shaun Loveless,Shelbie J. Cingoranelli,Yi Yang,Anthony Cirri,Christopher J. Johnson,Suzanne E. Lapi,Karena W. Chapman,Eszter Boros
标识
DOI:10.1021/acs.bioconjchem.0c00574
摘要
The radioactive isotopes scandium-44/47 and lutetium-177 are gaining relevance for radioimaging and radiotherapy, resulting in a surge of studies on their coordination chemistry and subsequent applications. Although the trivalent ions of these elements are considered close homologues, dissimilar chemical behavior is observed when they are complexed by large ligand architectures due to discrepancies between Lu(III) and Sc(III) ions with respect to size, chemical hardness, and Lewis acidity. Here, we demonstrate that Lu and Sc complexes of 1,4-bis(methoxycarbonyl)-7-[(6-carboxypyridin-2-yl)methyl]-1,4,7-triazacyclononane (H 3 mpatcn) and its corresponding bioconjugate picaga-DUPA can be employed to promote analogous structural features and, subsequently, biological properties for coordination complexes of these ions. The close homology was evidenced using potentiometric methods, computational modeling, variable temperature mass spectrometry, and pair distribution function analysis of X-ray scattering data. Radiochemical labeling, in vitro stability, and biodistribution studies with Sc-47 and Lu-177 indicate that the 7-coordinate ligand environment of the bifunctional picaga ligand is compatible with biological applications and the future investigation of β-emitting, picaga-chelated Sc and Lu isotopes for radiotherapy.
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