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功能化吡啶配体对[M(I)(CO)₃](⁺)(M = Re和⁹⁹ᵐTc)2 + 1配合物的放射/化学行为的影响

Influence of functionalized pyridine ligands on the radio/chemical behavior of [M(I)(CO)3](+) (M = Re and (99m)Tc) 2 + 1 complexes.

作者信息

Hayes Thomas R, Lyon Patrice A, Barnes Charles L, Trabue Steven, Benny Paul D

机构信息

Department of Chemistry, Washington State University , Pullman, Washington 99164, United States.

出版信息

Inorg Chem. 2015 Feb 16;54(4):1528-34. doi: 10.1021/ic502520x. Epub 2015 Jan 15.

Abstract

While a number of chelate strategies have been developed for the organometallic precursor fac-M(I)(OH2)3(CO)3 (M = Re, (99m)Tc), a unique challenge has been to improve the overall function and performance of these complexes for in vivo and in vitro applications. Since its discovery, fac-M(I)(OH2)3(CO)3 has served as an essential scaffold for the development of new targeted (99m)Tc based radiopharmaceuticals due to its labile aquo ligands. However, the lipophilic nature of the fac-M(I)(CO)3 core can influence the in vivo pharmacokinetics and biodistribution of the complexes. In an effort to understand and improve this behavior, monosubstituted pyridine ligands were used to assess the impact of donor nitrogen basicity on binding strength and stability of fac-M(I)(CO)3 in a 2 + 1 labeling strategy. A series of Re and (99m)Tc complexes were synthesized with picolinic acid as a bidentate ligand and 4-substituted pyridine ligands. These complexes were designed to probe the effect of pKa from the monodentate pyridine ligand both at the macro scale and radiochemical concentrations. Comparison of X-ray structural data and radiochemical solution experiments clearly indicate an increase in overall yield and stability as pyridine basicity increased.

摘要

虽然已经为有机金属前体 fac-M(I)(OH₂)₃(CO)₃(M = Re、⁹⁹ᵐTc)开发了多种螯合策略,但一个独特的挑战是提高这些配合物在体内和体外应用中的整体功能和性能。自发现以来,fac-M(I)(OH₂)₃(CO)₃因其不稳定的水合配体,一直是开发新型靶向⁹⁹ᵐTc基放射性药物的重要支架。然而,fac-M(I)(CO)₃核心的亲脂性会影响配合物的体内药代动力学和生物分布。为了理解和改善这种行为,在2 + 1标记策略中,使用单取代吡啶配体来评估供体氮碱性对fac-M(I)(CO)₃结合强度和稳定性的影响。以吡啶甲酸作为双齿配体和4-取代吡啶配体合成了一系列Re和⁹⁹ᵐTc配合物。这些配合物旨在在宏观尺度和放射化学浓度下探究单齿吡啶配体的pKa的影响。X射线结构数据和放射化学溶液实验的比较清楚地表明,随着吡啶碱性的增加,总产率和稳定性提高。

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