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基于环戊二烯的螯合剂带有膦酸吡啶侧基,用于 Cu-PET 成像:合成、理化研究、放射性标记和生物成像。

Cyclam-Based Chelators Bearing Phosphonated Pyridine Pendants for Cu-PET Imaging: Synthesis, Physicochemical Studies, Radiolabeling, and Bioimaging.

机构信息

Univ. Brest, UMR CNRS 6521, 6 Avenue Victor Le Gorgeu, 29200 Brest, France.

Université de Strasbourg, CNRS, UMR 7042-LIMA, Equipe de Chimie Bioorganique et Médicinale, ECPM, 25 rue Becquerel, Strasbourg 67087, France.

出版信息

Inorg Chem. 2021 Feb 15;60(4):2634-2648. doi: 10.1021/acs.inorgchem.0c03492. Epub 2021 Jan 26.

Abstract

Herein we present the preparation of two novel cyclam-based macrocycles ( and ), bearing phosphonate-appended pyridine side arms for the coordination of copper(II) ions in the context of Cu PET imaging. The two ligands have been prepared through conventional protection-alkylation sequences on cyclam, and their coordination properties have been thoroughly investigated. The corresponding copper complexes have been fully characterized in the solid state (X-ray diffraction analysis) and in solution (EPR and UV-vis spectroscopies). Potentiometric studies combined with spectrometry have also allowed us to determine their thermodynamic stability constants, confirming their high affinity for copper(II) cations. The kinetic inertness of the complexes has been verified by acid-assisted dissociation experiments, enabling their use in Cu-PET imaging in mice for the first time. Indeed, the two ligands could be quantitatively radiolabeled under mild conditions, and the resulting Cu complexes have demonstrated excellent stability in serum. PET imaging demonstrated a set of features emerging from the combination of picolinates and phosphonate units: high stability , fast clearance from the body via renal elimination, and most interestingly, very low fixation in the liver. This is in contrast with what was observed for monopicolinate cyclam (), which had a non-negligible accumulation in the liver, owing probably to its different charge and lipophilicity. These results thus pave the way for the use of such phosphonated pyridine chelators for Cu-PET imaging.

摘要

在此,我们介绍了两种新型基于环脒的大环(和)的制备方法,这些大环带有膦酸酯取代的吡啶侧臂,用于在 Cu PET 成像中配位铜(II)离子。这两种配体是通过环脒上的常规保护-烷基化序列制备的,其配位性质已经过深入研究。相应的铜配合物已在固态(X 射线衍射分析)和溶液中(EPR 和紫外可见光谱)进行了充分表征。结合光谱的电位研究还允许我们确定它们的热力学稳定常数,证实了它们对铜(II)阳离子的高亲和力。通过酸辅助解离实验验证了配合物的动力学惰性,这使其首次能够用于小鼠的 Cu-PET 成像。事实上,两种配体都可以在温和条件下进行定量放射性标记,所得的 Cu 配合物在血清中表现出极好的稳定性。PET 成像显示了一系列来自吡啶酸盐和膦酸盐单元组合的特征:高稳定性、通过肾脏排泄快速从体内清除,最有趣的是,在肝脏中的固定非常低。这与单吡啶酸盐环脒()观察到的情况形成对比,其在肝脏中有不可忽视的积累,这可能归因于其不同的电荷和疏水性。这些结果为使用这种膦酸吡啶螯合剂进行 Cu-PET 成像铺平了道路。

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