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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Cyclam Derivatives with a Bis(phosphinate) or a Phosphinato-Phosphonate Pendant Arm: Ligands for Fast and Efficient Copper(II) Complexation for Nuclear Medical Applications
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Cyclam Derivatives with a Bis(phosphinate) or a Phosphinato-Phosphonate Pendant Arm: Ligands for Fast and Efficient Copper(II) Complexation for Nuclear Medical Applications

机译:具有双膦酸酯或膦膦酸酯悬挂臂的Cyclam衍生物:用于核医学应用的快速高效铜(II)络合的配体

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摘要

Cyclam derivatives bearing one geminal bis(phosphinic acid), -CH2PO2HCH2PO2H2 (H2L1), or phosphinic-phosphonic acid, -CH2PO2HCH2PO3H2 (H3L2), pendant arm were synthesized and studied as potential copper(II) chelators for nuclear medical applications. The ligands showed good selectivity for copper(II) over zinc(II) and nickel(II) ions (log K-CuL = 25.8 and 27.7 for H2L1 and H3L2, respectively). Kinetic study revealed an unusual threestep complex formation mechanism. The initial equilibrium step leads to out-of-cage complexes with Cu2+ bound by the phosphorus-containing pendant arm. These species quickly rearrange to an in-cage complex with cyclam conformation II, which isomerizes to another in-cage complex with cyclam conformation I. The first in-cage complex is quantitatively formed in seconds (pH approximate to 5, 25 degrees C, Cu:L = 1:1, c(M) approximate to 1 mM). At pH >12, I isomers undergo nitrogen atom inversion, leading to III isomers; the structure of the III-[Cu(HL2)] complex in the solid state was confirmed by X-ray diffraction analysis. In an alkaline solution, interconversion of the I and III isomers is mutual, leading to the same equilibrium isomeric mixture; such behavior has been observed here for the first time for copper(II) complexes of cyclam derivatives. Quainum-chemical calculations showed small energetic differences between the isomeric complexes of H3L2 compared with analogous data for isomeric complexes of cyclam derivatives with one or two methylphosphonic acid pendant arm(s). Acid-assisted dissociation proved the kinetic inertness of the complexes. Preliminary radiolabeling of H2L1 and H3L2 with Cu-64 was fast and efficient, even at room temperature, giving specific activities of around 70 GBq of Cu-64 per 1 mu mol of the ligand (pH 6.2, 10 min, ca. 90 equiv of the ligand). These specific activities were much higher than those of H(3)nota and H(4)dota complexes prepared under identical conditions. The rare combination of simple ligand synthesis, very fast copper(II) complex formation, high thermodynamic stability, kinetic inertness, efficient radiolabeling, and expected low bone tissue affinity makes such ligands suitably predisposed to serve as chelators of copper radioisotopes in nuclear medicine.
机译:合成了带有一个双(次膦酸)双-次膦酸-CH2PO2HCH2PO2H2(H2L1)或次膦膦酸-CH2PO2HCH2PO3H2(H3L2)吊环的Cyclam衍生物,并作为核医学上潜在的铜(II)螯合剂进行了研究。配体对铜离子对锌离子和镍离子具有良好的选择性(H2L1和H3L2的log K-CuL分别为25.8和27.7)。动力学研究揭示了异常的三步复合物形成机理。最初的平衡步骤导致笼外配合物与含磷侧链的Cu2 +结合。这些物种迅速重排为具有cyclam构型II的笼内复合物,该异构体异构化为另一个具有cyclam构型I的笼内复合物。第一个笼内复合物在几秒钟内定量形成(pH约为5、25摄氏度,Cu :L = 1:1,c(M)约为1 mM)。在pH> 12时,I异构体会发生氮原子转化,从而生成III异构体。 X射线衍射分析证实了固态的III- [Cu(HL2)]配合物的结构。在碱性溶液中,I和III异构体相互转化,导致相同的平衡异构体混合物。对于环己酰胺衍生物的铜(II)配合物,此处首次观察到这种行为。量子化学计算显示,与具有一个或两个甲基膦酸侧链的环蛋白衍生物的异构体类似物相比,H3L2异构体之间的能级差异很小。酸辅助解离证明了配合物的动力学惰性。即使在室温下,使用Cu-64进行H2L1和H3L2的初步放射性标记也能快速有效地进行,即使每1 mol配体,其比活度约为70 GBq的Cu-64(pH 6.2,10分钟,约90当量)。配体)。这些比活性远高于在相同条件下制备的H(3)nota和H(4)dota配合物。简单的配体合成,非常快速的铜(II)配合物形成,高热力学稳定性,动力学惰性,有效的放射性标记以及预期的低骨组织亲和力的罕见组合使得此类配体适合于在核医学中用作铜放射性同位素的螯合剂。

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