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Effect of Molecular Architecture on the Performance of ~(19)F NMR Imaging Agents

机译:分子结构对〜(19)F NMR成像剂性能的影响

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Traditional magnetic resonance medical imaging agents based on paramagnetic ions or particles have a number of critical limitations, namely image contrast is often limited at low concentrations and sensitivity of the agents becomes diminished at higher magnetic field strengths. In this chapter we describe the development of a new class of polymeric imaging agent which relies on direct detection of the NMR signal of fluorine nuclei and hence circumvents these potential problems. The imaging performance of the new materials relies on the maintenance of librational motion of the fluorinated segments, necessary for partial averaging of the otherwise strong dipole-dipole interactions and large chemical shift interactions of the ~(19)F nuclei. The performance of partially-fluorinated block copolymers assembled into particles is described and related to the interactions of the polymer chains with the surrounding solvent medium. A second generation of materials based on a hyperbranched structure was developed based on the learning obtained from the earlier experiments and these demonstrated excellent in vitro and in vivo imaging performance.
机译:基于顺磁离子或颗粒的传统磁共振医学成像试剂具有许多临界限制,即图像对比度通常限制在低浓度下,并且在更高的磁场强度下,试剂的敏感性变得降低。在本章中,我们描述了一种新型聚合物成像剂的发展,其依赖于直接检测氟核的NMR信号,因此避免这些潜在的问题。新材料的成像性能依赖于氟化段的陈词运动的维持,其均强烈偶极 - 偶极相互作用的部分平均和〜(19)F核的大化学换档相互作用。将组装成颗粒的部分氟化嵌段共聚物的性能描述并与聚合物链与周围溶剂介质的相互作用有关。基于从早期实验获得的学习开发了基于超支结构的第二代材料,这些材料在体外和体内成像性能中表现出色。

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