首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Effect of the Regiochemistry of Butyl Amide Substituents on the Solution-State Structures of Lanthanide(III) DOTA-Tetraamide Complexes
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Effect of the Regiochemistry of Butyl Amide Substituents on the Solution-State Structures of Lanthanide(III) DOTA-Tetraamide Complexes

机译:丁基酰胺取代基的区域化学性质对镧系(III)DOTA-四酰胺配合物溶液状态结构的影响

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摘要

The coordination geometry adopted by the lanthanide complexes of DOTA-tetraamides is a critical factor in determining their water exchange kinetics. Controlling the water exchange kinetics of DOTA-tetraamide complexes, and by extension their coordination geometry, is of particular interest because of the potential application of this class of complex as PARACEST MRI contrast agents. To facilitate the maximum CEST effect at the lowest pre-saturation powers much slower exchange kinetics are required than are commonly observed with these types of chelates. Complexes that adopt the more slowly exchanging square antiprismatic coordination geometry are therefore preferred; however, the factors that govern which coordination geometry is preferred remain unclear. A series of DOTA-tetraamide complexes with butyl amide substituents in different regioisomeric configurations provides some insight into these factors. The population of each coordination geometry was found to vary substantially depending, upon the regiochemistry of the butyl amide substituent. It was observed that the twisted square antiprism coordiniition geometry, usually favored in complexes with the larger lanthanide ions only, is also increasingly favored for certain DOTA-tetraamide complexes with the smaller lanthanides. This is in marked contrast to simple DOTA-tetraamide complexes such as DOTAM. The effect was more prevalent in complexes formed with more bulky and more electron donating amide butyl substituents. It is also associated with loss of an inner-sphere water molecule from the complexes of later lanthanides that adopt the twisted square antiprismatic geometry. The complexes with sec-butyl substituents are inherently more complicated because of the introduction of a stereochemical center into each pendant arm. Unlike chiral complexes with larger amide substituents there is no "locking" effect of the orientation of the pendant arms in these complexes and up to four diastereoisomeric coordination isomers can be observed.
机译:DOTA-四酰胺的镧系元素络合物采用的配位几何结构是决定其水交换动力学的关键因素。由于这类复合物作为PARACEST MRI造影剂的潜在应用,控制DOTA-四酰胺复合物的水交换动力学以及扩展其配位几何结构尤为重要。为了在最低的预饱和功率下实现最大的CEST效果,需要比在这类螯合物中通常观察到的慢得多的交换动力学。因此,首选采用较慢交换方形反棱柱形配位几何形状的配合物;但是,尚不清楚决定采用哪种协调几何形状的因素。一系列具有不同区域异构构型的丁基酰胺取代基的DOTA-四酰胺配合物提供了对这些因素的一些了解。发现每种配位几何的总体根据丁基酰胺取代基的区域化学而显着变化。观察到,通常仅在与较大的镧系元素离子形成的络合物中偏爱的方形反棱镜配位几何形状对于某些具有较小的镧系元素的DOTA-四酰胺络合物也越来越受青睐。这与简单的DOTA-四酰胺复合物(例如DOTAM)形成鲜明对比。在具有更大体积和更多给电子酰胺丁基取代基的配合物中,这种作用更为普遍。它还与采用扭曲方形反棱柱几何形状的后来镧系元素的络合物损失内层水分子有关。由于将立体化学中心引入每个侧链臂中,因此具有仲丁基取代基的配合物本来就更复杂。与具有较大酰胺取代基的手性配合物不同,在这些配合物中没有悬垂臂取向的“锁定”效应,并且可以观察到多达四个非对映异构体配位异构体。

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