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一种酒石酸衍生的聚合物磁共振成像造影剂与小分子模型螯合物的比较。

Comparison of a tartaric acid derived polymeric MRI contrast agent to a small molecule model chelate.

作者信息

Lucas Robie L, Benjamin Michael, Reineke Theresa M

机构信息

Department of Chemistry, University of Cincinnati, Cincinnati, Ohio 45221-0172, USA.

出版信息

Bioconjug Chem. 2008 Jan;19(1):24-7. doi: 10.1021/bc700375m. Epub 2007 Dec 20.

Abstract

Contrast agents with high relaxivity are needed to increase the sensitivity of magnetic resonance imaging (MRI) for novel clinical and research applications. For this reason, polymeric structures containing multiple Gd(III) chelates are of current interest. Described in this communication are the syntheses and characterization of a glycopolymer derived from L-tartaric acid, Gd 4(H2O), as well as a low molecular weight compound, Gd 10(H2O), that models the Gd(III) chelate structure in the repeat unit of polymer Gd 4(H2O). Luminescence lifetime measurements in H2O and D2O for Eu(III) analogues of Gd 4(H2O) and Gd 10(H2O) [named Eu 4(H2O) and Eu 10(H2O)] reveal that the lanthanide in both structures likely has one water ligand in the primary coordination sphere. The relaxivity of the model chelate Gd 10(H 2O) at 400 MHz and 310 K was determined to be 4.7 mmol (-1).s (-1), representing a nearly 50% increase over Magnevist (3.2 mmol (-1).s (-1)). Relaxivity values on a per Gd basis for the polymeric structure Gd 4(H2O) prepared at two degrees of polymerization, n = 12 and 19, are similar, but slightly lower than Gd 10(H2O) (4.4 mmol (-1).s (-1) and 4.5 mmol (-1).s (-1), respectively). However, their molecular relaxivities of 51 mmol (-1).s (-1) and 80 mmol (-1).s (-1), respectively, provide a substantial increase over that of Magnevist.

摘要

为了提高磁共振成像(MRI)在新型临床和研究应用中的灵敏度,需要具有高弛豫率的造影剂。因此,含有多个钆(III)螯合物的聚合物结构目前备受关注。本文报道了一种由L-酒石酸衍生的糖聚合物Gd 4(H2O)以及一种低分子量化合物Gd 10(H2O)的合成与表征,该低分子量化合物模拟了聚合物Gd 4(H2O)重复单元中的钆(III)螯合物结构。对Gd 4(H2O)和Gd 10(H2O)的铕(III)类似物[命名为Eu 4(H2O)和Eu 10(H2O)]在H2O和D2O中的发光寿命测量表明,两种结构中的镧系元素在一级配位球中可能都有一个水配体。模型螯合物Gd 10(H 2O)在400 MHz和310 K时的弛豫率测定为4.7 mmol (-1).s (-1),比马根维显(3.2 mmol (-1).s (-1))提高了近50%。在两种聚合度n = 12和19下制备的聚合物结构Gd 4(H2O),以每个钆计算的弛豫率值相似,但略低于Gd 10(H2O)(分别为4.4 mmol (-1).s (-1)和4.5 mmol (-1).s (-1))。然而,它们的分子弛豫率分别为51 mmol (-1).s (-1)和80 mmol (-1).s (-1),比马根维显有显著提高。

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