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控制源自 NO2A 的潜在 Mn 基 MRI 造影剂中的水交换率。

Controlling water exchange rates in potential Mn-based MRI agents derived from NO2A.

机构信息

Universidade da Coruña, Centro de Investigacións Científicas Avanzadas (CICA) and Departamento de Química, Facultade de Ciencias, 15071, A Coruña, Galicia, Spain.

出版信息

Dalton Trans. 2019 Mar 19;48(12):3962-3972. doi: 10.1039/c9dt00211a.

Abstract

We report a series of pentadentate ligands based on a 1,4,7-triazacyclononane-1,4-diacetic acid (H2NO2A) containing different substituents attached to the third nitrogen atom of the macrocyclic unit. Detailed 1H Nuclear Magnetic Relaxation Dispersion (NMRD) characterisation of the corresponding Mn2+ complexes suggests the formation of six-coordinate species in solution containing an inner-sphere water molecule. This was confirmed by recording the transverse 17O relaxation time and chemical shift measurements. The water exchange rate of the coordinated water molecule was found to be strongly influenced by the nature of the substituent R at position 7 of the triazacyclononane unit (R = Me, k298ex = 62.6 × 107 s-1; R = Bz, k298ex = 4.4 × 107 s-1; R = 1-phenylethyl, k298ex = 2.6 × 107 s-1). The decreasing exchange rates are explained by the increasing bulkiness of the substituent, which hinders the approach of the entering water molecule in an associatively activated water exchange mechanism. This is supported by DFT calculations (M062X/TZVP), which confirm the associative nature of the water exchange reaction. A potentially decadentate ligand containing two NO2A units linked by a xylenyl spacer in the meta position was also synthesised. The corresponding binuclear Mn2+ complex contains two metal ions with different hydration numbers, as evidenced by 1H NMRD and 17O NMR measurements. DFT calculations show that this is related to the presence of a bridging bidentate μ-η1-carboxylate group connecting the two metal centers. The results reported in this work provide a straightforward strategy to control the exchange rate of the coordinated water molecule in this family of MRI contrast agent candidates.

摘要

我们报告了一系列基于 1,4,7-三氮杂环壬烷-1,4-二乙酸(H2NO2A)的五齿配体,其中包含不同取代基连接在大环单元的第三个氮原子上。相应的 Mn2+ 配合物的详细 1H 核磁共振弛豫分散(NMRD)表征表明,在溶液中形成了六配位物种,其中包含一个内球水分子。这通过记录横向 17O 弛豫时间和化学位移测量得到了证实。发现配位水分子的水交换速率强烈受到三氮杂环壬烷单元 7 位取代基 R 的性质的影响(R = Me,k298ex = 62.6 × 107 s-1;R = Bz,k298ex = 4.4 × 107 s-1;R = 1-苯乙基,k298ex = 2.6 × 107 s-1)。取代基体积的增加阻碍了进入水分子的接近,从而导致交换速率降低,这种情况可以通过在缔合激活的水交换机制中解释。这得到了 DFT 计算(M062X/TZVP)的支持,该计算证实了水交换反应的缔合性质。还合成了一种含有两个 NO2A 单元的潜在 decadentate 配体,它们通过间位的二甲苯间隔基连接。相应的双核 Mn2+ 配合物含有两个具有不同水合数的金属离子,这一点通过 1H NMRD 和 17O NMR 测量得到了证明。DFT 计算表明,这与连接两个金属中心的桥联双齿 μ-η1-羧酸盐基团的存在有关。本工作报道的结果为控制该类 MRI 造影剂候选物中配位水分子的交换速率提供了一种直接的策略。

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