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MRI sensing based on the displacement of paramagnetic ions from chelated complexes

机译:基于螯合复合物中顺磁离子位移的mRI传感

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摘要

We introduce a mechanism for ion sensing by MRI in which analytes compete with paramagnetic ions for binding to polydentate chelating agents. Displacement of the paramagnetic ions results in alteration of solvent interaction parameters and consequent changes in relaxivity and MRI contrast. The MRI changes can be tuned by the choice of chelator. As an example, we show that calcium-dependent displacement of Mn[superscript 2+] ions bound to EGTA and BAPTA results in a T[subscript 1]-weighted MRI signal increase, whereas displacement from calmodulin results in a signal decrease. The changes are ion selective and can be explained using relaxivity theory. The ratio of T[subscript 2] to T[subscript 1] relaxivity is also calcium-dependent, indicating the feasibility of “ratiometric” analyte detection, independent of the probe concentration. Measurement of paramagnetic ion displacement effects could be used to determine analyte ion concentrations with spatial resolution in opaque specimens.
机译:我们介绍了一种通过MRI进行离子感测的机制,其中分析物与顺磁性离子竞争结合多齿螯合剂。顺磁性离子的置换导致溶剂相互作用参数的改变以及弛豫度和MRI对比的结果改变。可以通过选择螯合剂来调节MRI的变化。例如,我们显示与EGTA和BAPTA结合的Mn [上标2+]离子的钙依赖性位移导致T [下标1]加权MRI信号增加,而钙调蛋白的位移导致信号减少。这些变化是离子选择性的,可以使用弛豫理论进行解释。 T [下标2]与T [下标1]弛豫率之比也与钙有关,这表明“比率式”分析物检测的可行性与探针浓度无关。顺磁性离子位移效应的测量可用于确定不透明样品中具有空间分辨率的分析物离子浓度。

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