IPHC, Université de Strasbourg, 25 rue Becquerel, 67087 Strasbourg Cedex, France.
Org Biomol Chem. 2014 Dec 21;12(47):9601-20. doi: 10.1039/c4ob01514b. Epub 2014 Oct 23.
A series of bis-, tris- and tetra-phosphonated pyridine ligands is presented. In view of their potential use as chelates for radiopharmaceutical applications, the physico-chemical properties of the ligands and of their Co(II), Ni(II), Cu(II), and Zn(II) complexes were studied by means of potentiometry and UV-Vis absorption spectroscopy. The pKa values of the ligands and of the complexes, as well as the stability constants for the formation of the complexes, are presented. The kinetic aspects of the formation of Cu(II) complexes and of their dissociation in acidic media were studied by means of stopped flow experiments, and the stability of the Cu(II) complex toward reduction to Cu(I) was investigated by cyclic voltammetry and by titration with different reducing agents. The different thermodynamic and kinetic aspects of the polyphosphonated ligands were compared with regard to the impact of the number of phosphonic acid functions. Considering the very promising properties for complexation, preliminary SPECT/CT imaging experiments were carried out on mice with (99m)Tc using the bis- and tetra-phosphonated ligands L(2) and L(1). Finally, a bifunctional version of chelate L(1), L*, was used to label MTn12, a rat monoclonal antibody with both specificity and relatively high affinity for murine tenascin-C. The labeling was monitored by MALDI/MS spectrometry and the affinity of the labeled antibody was checked by immunostaining experiments. After chelation with (99m)Tc, the (99m)Tc-L*-MTn12 antibody was injected into a transgenic mouse with breast cancer and the biodistribution of the labeled antibody was followed by SPECT/CT imaging.
本文介绍了一系列双膦、三膦和四膦化吡啶配体。鉴于它们可能作为放射性药物应用的螯合剂,通过电位法和紫外可见吸收光谱法研究了配体及其 Co(II)、Ni(II)、Cu(II)和 Zn(II)配合物的物理化学性质。给出了配体和配合物的 pKa 值以及配合物形成的稳定常数。通过停流实验研究了 Cu(II)配合物的形成动力学及其在酸性介质中的解离,通过循环伏安法和不同还原剂滴定研究了 Cu(II)配合物对还原为 Cu(I)的稳定性。比较了多膦酸化配体的不同热力学和动力学性质,以了解磷酸功能数目的影响。考虑到配位性能非常有前景,使用双膦和四膦化配体 L(2)和 L(1),在小鼠上进行了 (99m)Tc 的 SPECT/CT 成像实验。最后,使用螯合剂 L(1)的双功能版本 L*,标记 MTn12,这是一种对鼠腱糖蛋白 C 具有特异性和相对高亲和力的大鼠单克隆抗体。通过 MALDI/MS 光谱监测标记,并通过免疫染色实验检查标记抗体的亲和力。用 (99m)Tc 螯合后,将标记的 (99m)Tc-L*-MTn12 抗体注入患有乳腺癌的转基因小鼠中,并通过 SPECT/CT 成像跟踪标记抗体的生物分布。