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大环DOTA配合物镧系元素系列的结构变化:对磁共振成像造影剂设计的见解。

Structural variations across the lanthanide series of macrocyclic DOTA complexes: insights into the design of contrast agents for magnetic resonance imaging.

作者信息

Benetollo F, Bombieri G, Calabi L, Aime S, Botta M

机构信息

ICIS-CNR, Corso Stati Uniti 4, 35127 Padua, Italy.

出版信息

Inorg Chem. 2003 Jan 13;42(1):148-57. doi: 10.1021/ic025790n.

Abstract

It was early shown that the macrocyclic Ln(DOTA) complexes (DOTA = 1,4,7,10-tetra-azacyclododecane-N,N',N' ',N' "-tetraacetic acid) exists in solution as a mixture of two enantiomeric pairs of diastereoisomers differing in the ligand conformation, namely, square antiprismatic (SA) and twisted square antiprismatic (TSA) geometries, respectively. Later, extensive (1)H NMR investigations suggested that a coordination change may be superimposed on this conformational equilibrium involving two additional structures in which the metal ion possesses a coordination number of eight (CN 8). It was predicted that these two species, lacking the apical coordinated water molecule, would maintain the SA and TSA coordination geometries, and therefore, they have been labeled as SA' and TSA', respectively. In this work we report the X-ray solid-state crystal structure determination of six Ln(DOTA) complexes representative of all four coordination geometry typologies deduced from NMR solution studies. A distinctive structural feature that discriminates SA (and SA') and TSA (and TSA') structures is represented by the twist angle between the two square planes of the antiprism, the basal four nitrogen, and the apical four oxygen planes. Ce(DOTA)(H(2)O) displays a TSA structural typology with a twist angle of 25 degrees and a Ce-O(water) distance of 2.59 A. The SA-type structure has been found in the case of complexes with Pr(III), Nd(III), and Dy(III), where the twist angle is 39, 39, and 38 degrees, respectively, and the metal-water oxygen distance varies significantly (Pr-O(w) 2.529 A; Nd-O(w) 2.508 A; and Dy-O(w) 2.474 A). Tm(DOTA) displays a TSA'-type structure with a twist angle of 24 degrees. As compared with the TSA structure of the corresponding Ce(III) complex, the Tm(III) complex shows an overall marked shrinkage of all metal-nitrogen and metal-oxygen distances (ca. 0.2 A), which reflects the contraction of the metal ionic radius across the series but also the effect associated with the decrease of the CN from 9 to 8. In Sc(DOTA), the even smaller ionic radius of Sc(III) shifts the geometry of the coordination cage to the more compact SA' typology with a twist angle of 41 degrees, a value very similar to that found in the SA structures of lanthanide(III) ions with CN 9. Finally, an investigation was made into the hydration spheres of the complexes with SA and TSA geometries to account for the experimental evidence of a markedly different rate of water exchange for the two isomeric structures. This is of fundamental importance to the understanding of the corresponding Gd(III) complexes as MRI contrast agents.

摘要

早期研究表明,大环Ln(DOTA)配合物(DOTA = 1,4,7,10-四氮杂环十二烷-N,N',N'',N'''-四乙酸)在溶液中以两种对映体对的非对映异构体混合物形式存在,这两种异构体在配体构象上有所不同,分别为方形反棱柱体(SA)和扭曲方形反棱柱体(TSA)几何结构。后来,广泛的¹H NMR研究表明,配位变化可能叠加在这种构象平衡上,涉及另外两种结构,其中金属离子的配位数为8(CN 8)。据预测,这两种物种由于缺少顶端配位水分子,将保持SA和TSA配位几何结构,因此,它们分别被标记为SA'和TSA'。在这项工作中,我们报告了六种Ln(DOTA)配合物的X射线固态晶体结构测定结果,这些配合物代表了从NMR溶液研究中推导出来的所有四种配位几何类型。区分SA(和SA')与TSA(和TSA')结构的一个显著结构特征是反棱柱体的两个方形平面、底部四个氮平面和顶端四个氧平面之间的扭转角。[Ce(DOTA)(H₂O)]⁻呈现出TSA结构类型,扭转角为25°,Ce-O(水)距离为2.59 Å。在Pr(III)、Nd(III)和Dy(III)的配合物中发现了SA型结构,其扭转角分别为39°、39°和38°,金属-水氧距离有显著变化(Pr-O(w) 2.529 Å;Nd-O(w) 2.508 Å;Dy-O(w) 2.474 Å)。[Tm(DOTA)]⁻呈现出TSA'型结构,扭转角为24°。与相应Ce(III)配合物的TSA结构相比,Tm(III)配合物中所有金属-氮和金属-氧距离总体上显著收缩(约0.2 Å),这反映了整个系列中金属离子半径的收缩,也反映了配位数从9降至8所带来的影响。在[Sc(DOTA)]⁻中,Sc(III)更小的离子半径将配位笼的几何结构转变为更紧凑的SA'类型,扭转角为41°,这一数值与具有CN 9的镧系(III)离子的SA结构中发现的数值非常相似。最后,对具有SA和TSA几何结构的配合物的水合球进行了研究,以解释两种异构结构水交换速率明显不同的实验证据。这对于理解相应的Gd(III)配合物作为MRI造影剂至关重要。

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