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一种对含硫醇化合物有响应的基于钆(III)的造影剂的合成与表征

Synthesis and characterization of a Gd(III) based contrast agent responsive to thiol containing compounds.

作者信息

Carrera Carla, Digilio Giuseppe, Baroni Simona, Burgio Daniela, Consol Simona, Fedeli Franco, Longo Dario, Mortillaro Armando, Aime Silvio

机构信息

Department of Chemistry IFM, University of Torino, Via Pietro Giuria 7, I-10125, Torino, Italy.

出版信息

Dalton Trans. 2007 Nov 21(43):4980-7. doi: 10.1039/b705088g. Epub 2007 Oct 15.

Abstract

A novel Gd(III) complex with a modified DO3A-like chelating cage has been synthesized and characterized as a candidate contrast agent responsive to the concentration of free thiols in tissues (essentially represented by reduced glutathione, GSH). The novel compound (called Gd-DO3AS-Act) bears a flexible linker ending with a 2-pyridyl-dithio group, that can promptly react with free thiols (XSH) to form mixed disulfides of the form Gd-DO3AS-SX. Compound Gd-DO3AS-Act is characterized by a millimolar relaxivity as high as 8.1 mM(-1) s(-1) (at 20 MHz, 25 degrees C and pH 7.4). Upon reaction with GSH, the Gd-DO3AS-SG covalent adduct is formed and the millimolar relaxivity drops to 4.1 mM(-1) s(-1). Such a decrease in relaxivity is explained on the basis of the formation of an intramolecular coordinative bond between one of the glutathionyl carboxyl groups and the Gd(III) centre, lowering the hydration state of the paramagnetic centre. (1)H-NMR dispersion profiles together with (17)O-NMR transverse relaxation time versus temperature profiles confirm that the hydration of the Gd(III) centre is strongly reduced ongoing from Gd-DO3AS-Act to the Gd-DO3AS-SG adduct. The relaxivity difference brought about by the reaction of Gd-DO3AS-Act with GSH can be enhanced up to 60% in the presence of poly-beta-cyclodextrin.

摘要

一种带有修饰的类DO3A螯合笼的新型钆(III)配合物已被合成并表征,作为一种对组织中游离硫醇(主要以还原型谷胱甘肽,即GSH表示)浓度有响应的候选造影剂。这种新型化合物(称为Gd-DO3AS-Act)带有一个以2-吡啶基二硫基结尾的柔性连接基,它能迅速与游离硫醇(XSH)反应形成Gd-DO3AS-SX形式的混合二硫键。化合物Gd-DO3AS-Act的特征在于其毫摩尔弛豫率高达8.1 mM⁻¹ s⁻¹(在20 MHz、25℃和pH 7.4条件下)。与GSH反应后,会形成Gd-DO3AS-SG共价加合物,毫摩尔弛豫率降至4.1 mM⁻¹ s⁻¹。弛豫率的这种降低是基于谷胱甘肽羧基之一与钆(III)中心之间形成分子内配位键,从而降低了顺磁中心的水合状态来解释的。¹H-NMR色散图谱以及¹⁷O-NMR横向弛豫时间随温度变化的图谱证实,从Gd-DO3AS-Act到Gd-DO3AS-SG加合物,钆(III)中心的水合作用大幅降低。在存在聚-β-环糊精的情况下,Gd-DO3AS-Act与GSH反应带来的弛豫率差异可提高至60%。

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