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锰联吡啶配合物兼具卓越的稳定性、惰性和磁共振成像效率。

Mn Bispidine Complex Combining Exceptional Stability, Inertness, and MRI Efficiency.

作者信息

Ndiaye Daouda, Cieslik Patrick, Wadepohl Hubert, Pallier Agnès, Même Sandra, Comba Peter, Tóth Éva

机构信息

Centre de Biophysique Moléculaire, CNRS UPR 4301, Université d'Orléans, rue Charles Sadron, 45071 Orléans, France.

Anorganisch-Chemisches Institut, Universität Heidelberg, INF 270, D-69120 Heidelberg, Germany.

出版信息

J Am Chem Soc. 2022 Dec 7;144(48):22212-22220. doi: 10.1021/jacs.2c10108. Epub 2022 Nov 29.

Abstract

As an essential metal ion and an efficient relaxation agent, Mn holds a great promise to replace Gd in magnetic resonance imaging (MRI) contrast agent applications, if its stable and inert complexation can be achieved. Toward this goal, four pyridine and one carboxylate pendants have been introduced in coordinating positions on the bispidine platform to yield ligand L. Thanks to its rigid and preorganized structure and perfect size match for Mn, L provides remarkably high thermodynamic stability (log = 19.47), selectivity over the major biological competitor Zn (log/) = 4.4), and kinetic inertness. Solid-state X-ray data show that MnL(MeOH) has an unusual eight-coordinate structure with a coordinated solvent molecule, in contrast to the six-coordinate structure of ZnL, underlining that the coordination cavity is perfectly adapted for Mn, while it is too large for Zn. In aqueous solution, O NMR data evidence one inner sphere water and dissociatively activated water exchange ( = 13.5 × 10 s) for MnL. Its water proton relaxivity ( = 4.44 mM s at 25 °C, 20 MHz) is about 30% higher than values for typical monohydrated Mn complexes, which is related to its larger molecular size; its relaxation efficiency is similar to that of clinically used Gd-based agents. MRI experiments realized in control mice at 0.02 mmol/kg injected dose indicate good signal enhancement in the kidneys and fast renal clearance. Taken together, MnL is the first chelate that combines such excellent stability, selectivity, inertness and relaxation properties, all of primary importance for MRI use.

摘要

作为一种必需的金属离子和高效的弛豫剂,如果能够实现其稳定且惰性的络合,锰在磁共振成像(MRI)造影剂应用中极有希望取代钆。为实现这一目标,在双吡啶平台的配位位置引入了四个吡啶和一个羧酸盐侧基,得到配体L。由于其刚性且预组织化的结构以及与锰完美的尺寸匹配,L具有非常高的热力学稳定性(logβ = 19.47)、对主要生物竞争离子锌的选择性(logβ/β = 4.4)以及动力学惰性。固态X射线数据表明,MnL(MeOH)具有不寻常的八配位结构,带有一个配位溶剂分子,这与ZnL的六配位结构形成对比,突出了配位腔对锰完美适配,而对锌来说则太大。在水溶液中,O NMR数据证明MnL有一个内界水和离解活化的水交换(k = 13.5 × 10⁻⁶ s⁻¹)。其水质子弛豫率(在25 °C,20 MHz时为4.44 mM⁻¹ s⁻¹)比典型的一水合锰配合物的值高约30%,这与其较大的分子尺寸有关;其弛豫效率与临床使用的基于钆的造影剂相似。在注射剂量为0.02 mmol/kg的对照小鼠中进行的MRI实验表明,肾脏中有良好的信号增强且肾脏清除速度快。综上所述,MnL是第一种结合了如此优异的稳定性、选择性、惰性和弛豫特性的螯合物,所有这些特性对于MRI应用都至关重要。

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