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一种与菊粉共价结合的二乙烯三胺羧酸 - 磷酸衍生物的钆(III)配合物,一种潜在的大分子磁共振成像造影剂。

A gadolinium(III) complex of a carboxylic-phosphorus acid derivative of diethylenetriamine covalently bound to inulin, a potential macromolecular MRI contrast agent.

作者信息

Lebdusková Petra, Kotek Jan, Hermann Petr, Vander Elst Luce, Muller Robert N, Lukes Ivan, Peters Joop A

机构信息

Laboratory of Applied Organic Chemistry and Catalysis, Delft University of Technology, Julianalaan 136, 2628 BL, The Netherlands.

出版信息

Bioconjug Chem. 2004 Jul-Aug;15(4):881-9. doi: 10.1021/bc049966g.

Abstract

A novel conjugate of a polysaccharide and a Gd(III) chelate with potential as contrast agent for magnetic resonance imaging (MRI) was synthesized. The structure of the chelate was derived from H5DTPA by replacing the central pendant arm by a phosphinic acid functional group, which was covalently bound to the polysaccharide inulin. On the average, each monosaccharide unit of the inulin was attached to approximately one (0.9) chelate moiety. The average molecular weight is 23110 and the average number of Gd3+ ions per molecule is 24. The ligand binds the Gd3+ ion in an octadentate fashion via three nitrogen atoms, four carboxylate oxygen atoms, and one P-O oxygen atom, and its first coordination sphere is completed by a water molecule. This compound shows promising properties for application as a contrast agent for MRI thanks to a favorable residence lifetime of this water molecule (170 ns at 298 K), a relatively long rotational correlation time (866 ps at 298 K), and the presence of two water molecules in the second coordination sphere of the Gd3+ ion. Furthermore, its stability toward transmetalation with Zn(II) is as high as that of the clinically used [Gd(DTPA)(H2O)]2-.

摘要

合成了一种新型多糖与钆(III)螯合物的共轭物,其具有作为磁共振成像(MRI)造影剂的潜力。该螯合物的结构由H5DTPA衍生而来,通过用次膦酸官能团取代中心悬垂臂,该官能团与多糖菊粉共价结合。平均而言,菊粉的每个单糖单元连接到约一个(0.9)螯合物部分。平均分子量为23110,每个分子中Gd3+离子的平均数为24。配体通过三个氮原子、四个羧酸根氧原子和一个P-O氧原子以八齿方式结合Gd3+离子,其第一配位层由一个水分子完成。由于该水分子具有良好的停留寿命(298K时为170ns)、相对较长的旋转相关时间(298K时为866ps)以及Gd3+离子第二配位层中存在两个水分子,该化合物作为MRI造影剂显示出有前景的性质。此外,其对与Zn(II)进行金属转移的稳定性与临床使用的[Gd(DTPA)(H2O)]2-一样高。

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