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Effect of Magnetic Coupling on Water Proton Relaxivity in a Series of Transition Metal GdIII Complexes

机译:磁耦合对一系列过渡金属GdIII配合物水质子弛豫的影响

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摘要

A fundamental challenge in the design of bioresponsive (or bioactivated) GdIII-based magnetic resonance (MR) imaging probes is the considerable background signal present in the “preactivated” state that arises from outer-sphere relaxation processes. When sufficient concentrations of a bioresponsive agent are present (i.e., a detectable signal in the image), the inner- and outer-sphere contributions to r1 may be misinterpreted to conclude that the agent has been activated, when it has not. Of the several parameters that determine the observed MR signal of an agent, only the electron relaxation time (T1e) impacts both the inner- and outer-sphere relaxation. Therefore, strategies to minimize this background signal must be developed to create a near zero-background (or truly “off” state) of the agent. Here, we demonstrate that intramolecular magnetic exchange coupling when GdIII is coupled to a paramagnetic transition metal provides a means to overcome the contribution of second- and outer-sphere contributions to the observed relaxivity. We have prepared a series of complexes with the general formula LMLn(μ-O2CCH3)(O2CCH3)2 (M = Co, Cu, Zn). Solid-state magnetic susceptibility measurements reveal significant magnetic coupling between GdIII and the transition metal ion. Nuclear magnetic relaxation dispersion (NMRD) analysis confirms that the observed differences in relaxivity are associated with the modulation of T1e at GdIII. These results clearly demonstrate that magnetic exchange coupling between GdIII and a transition metal ion can provide a significant decrease in T1e (and therefore the relaxivity of GdIII). This design strategy is being exploited to prepare new generations of preclinical bioresponsive MR imaging probes with near zero-background.
机译:设计基于生物响应(或生物激活)的Gd III 的磁共振(MR)成像探针的一个基本挑战是外球弛豫过程产生的处于“预激活”状态的大量背景信号。当存在足够浓度的生物响应剂时(即图像中可检测到的信号),可能会误解r1的内外层贡献,以推断该试剂已被激活,而尚未激活。在确定观察到的试剂MR信号的几个参数中,只有电子弛豫时间(T1e)影响内球和外球弛豫。因此,必须开发出使该背景信号最小化的策略以创建代理的接近零背景(或真正的“关闭”状态)。在这里,我们证明了当Gd III 耦合到顺磁过渡金属时,分子内磁交换耦合提供了一种克服第二和外球对观察到的弛豫性的贡献的手段。我们制备了一系列配合物,通式为LMLn(μ-O2CCH3)(O2CCH3)2(M = Co,Cu,Zn)。固态磁化率测量表明,Gd III 与过渡金属离子之间存在显着的磁耦合。核磁弛豫弥散(NMRD)分析证实,观察到的弛豫差异与Gd III 时T1e的调节有关。这些结果清楚地表明,Gd III 与过渡金属离子之间的磁交换耦合可显着降低T1e(因此,Gd III 具有弛豫性)。该设计策略正被用于制备具有接近零背景的新一代临床前生物反应性MR成像探针。

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