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Preparation Purification and Characterization of Lanthanide Complexes for Use as Contrast Agents for Magnetic Resonance Imaging

机译:镧系配合物的制备纯化和表征用作磁共振成像的造影剂

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摘要

Polyaminopolycarboxylate-based ligands are commonly used to chelate lanthanide ions, and the resulting complexes are useful as contrast agents for magnetic resonance imaging (MRI). Many commercially available ligands are especially useful because they contain functional groups that allow for fast, high-purity, and high-yielding conjugation to macromolecules and biomolecules via amine-reactive activated esters and isothiocyanate groups or thiol-reactive maleimides. While metalation of these ligands is considered common knowledge in the field of bioconjugation chemistry, subtle differences in metalation procedures must be taken into account when selecting metal starting materials. Furthermore, multiple options for purification and characterization exist, and selection of the most effective procedure partially depends on the selection of starting materials. These subtle differences are often neglected in published protocols. Here, our goal is to demonstrate common methods for metalation, purification, and characterization of lanthanide complexes that can be used as contrast agents for MRI (Figure 1). We expect that this publication will enable biomedical scientists to incorporate lanthanide complexation reactions into their repertoire of commonly used reactions by easing the selection of starting materials and purification methods.
机译:基于聚氨基聚羧酸盐的配体通常用于螯合镧系元素离子,所得的络合物可用作磁共振成像(MRI)的造影剂。许多可商购的配体是特别有用的,因为它们含有允许通过胺反应性活化的酯和异硫氰酸酯基团或硫醇反应性的马来酰亚胺与大分子和生物分子快速,高纯度和高收率结合的官能团。虽然这些配体的金属化被认为是生物共轭化学领域的常识,但是在选择金属原料时,必须考虑金属化步骤的细微差别。此外,存在多种纯化和表征方法,最有效方法的选择部分取决于原料的选择。这些细微的差异通常在已发布的协议中被忽略。在这里,我们的目标是演示可以用作MRI造影剂的镧系元素配合物的金属化,纯化和表征的常用方法。我们希望该出版物将使生物医学科学家能够通过简化原材料和纯化方法的选择,将镧系元素络合反应纳入他们的常用反应库。

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