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The effect of regioisomerism on the coordination chemistry and CEST properties of lanthanide(III) NB-DOTA-tetraamide chelates

机译:区域异构对镧系元素NB-DOTA-四酰胺螯合物的配位化学和CEST性质的影响

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摘要

Chemical exchange saturation transfer (CEST) offers many advantages as a method of generating contrast in magnetic resonance images. However, many of the exogenous agents currently under investigation suffer from detection limits that are still somewhat short of what can be achieved with more traditional Gd3+ agents. To remedy this limitation we have undertaken an investigation of Ln3+ DOTA-tetraamide chelates (where DOTA is 1,4,7,10-tetraazacyclododecane-1,4,7,10-tetraacetic acid) that have unusually rigid ligand structures: the nitrobenzyl derivatives of DOTA-tetraamides with (2-phenylethyl)amide substituents. In this report we examine the effect of incorporating hydrophobic amide substituents on water exchange and CEST. The ligand systems chosen afforded a total of three CEST-active isomeric square antiprismatic chelates; each of these chelates was found to have different water exchange and CEST characteristics. The position of a nitrobenzyl substituent on the macrocyclic ring strongly influenced the way in which the chelate and Ln3+ coordination cage distorted. These differential distortions were found to affect the rate of water proton exchange in the chelates. But, by far the greatest effect arose from altering the position of the hydrophobic amide substituent, which, when forced upwards around the water binding site, caused a substantial reduction in the rate of water proton exchange. Such slow water proton exchange afforded a chelate that was 4.5 times more effective as a CEST agent than its isomeric counterparts in dry acetonitrile and at low temperatures and very low presaturation powers.
机译:作为在磁共振图像中产生对比度的一种方法,化学交换饱和转移(CEST)具有许多优点。但是,目前正在研究的许多外源性试剂的检测限仍然比传统的Gd 3 + 试剂所能达到的检测限还差一些。为了弥补这一局限性,我们对Ln 3 + DOTA-四酰胺螯合物(其中DOTA为1,4,7,10-四氮杂环十二烷-1,4,7,10-四乙酸)进行了研究。具有非同寻常的刚性配体结构:具有(2-苯基乙基)酰胺取代基的DOTA-四酰胺的硝基苄基衍生物。在本报告中,我们研究了将疏水性酰胺取代基并入对水交换和CEST的影响。所选择的配体体系总共提供了三种CEST活性异构体方形反棱柱螯合物;发现每种螯合剂具有不同的水交换和CEST特性。大环上硝基苄基取代基的位置强烈影响螯合物和Ln 3 + 配位笼的变形方式。发现这些不同的畸变影响螯合物中水质子交换的速率。但是,到目前为止,最大的作用是改变疏水性酰胺取代基的位置,当迫使疏水性酰胺取代基在水结合位点附近向上移动时,质子交换速率将大大降低。如此缓慢的水质子交换提供的螯合物作为CEST剂,在干燥的乙腈中,在低温和非常低的预饱和力下,其同质物的效用是其同等物的4.5倍。

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