Department of Diagnostic and Interventional Radiology, MR unit, Institute for Clinical and Experimental Medicine, Prague, Czech Republic.
Institute of Biophysics and Informatics, First Faculty of Medicine, Charles University, Prague, Czech Republic.
Sci Rep. 2022 Feb 8;12(1):2118. doi: 10.1038/s41598-022-06125-7.
We present the MR properties of a novel bio-responsive phosphorus probe doped with iron for dual proton and phosphorus magnetic resonance imaging (H/P-MRI), which provide simultaneously complementary information. The probes consist of non-toxic biodegradable calcium phytate (CaIP) nanoparticles doped with different amounts of cleavable paramagnetic Fe ions. Phosphorus atoms in the phytate structure delivered an efficient P-MR signal, with iron ions altering MR contrast for both H and P-MR. The coordinated paramagnetic Fe ions broadened the P-MR signal spectral line due to the short T relaxation time, resulting in more hypointense signal. However, when Fe was decomplexed from the probe, relaxation times were prolonged. As a result of iron release, intensity of H-MR, as well as the P-MR signal increase. These H and P-MR dual signals triggered by iron decomplexation may have been attributable to biochemical changes in the environment with strong iron chelators, such as bacterial siderophore (deferoxamine). Analysing MR signal alternations as a proof-of-principle on a phantom at a 4.7 T magnetic field, we found that iron presence influenced H and P signals and signal recovery via iron chelation using deferoxamine.
我们提出了一种新型的生物响应磷探针的 MR 特性,该探针掺杂了铁,可用于双重质子和磷磁共振成像(H/P-MRI),可提供互补信息。探针由无毒可生物降解的植酸钙(CaIP)纳米粒子组成,掺杂了不同数量的可裂解的顺磁 Fe 离子。植酸盐结构中的磷原子提供了有效的 P-MR 信号,而铁离子改变了 H 和 P-MR 的磁共振对比。配位的顺磁 Fe 离子由于短 T1 弛豫时间而拓宽了 P-MR 信号谱线,导致信号更暗。然而,当铁从探针中脱络合时,弛豫时间延长。由于铁的释放,H-MR 和 P-MR 信号强度增加。这种由铁脱络合触发的 H 和 P-MR 双重信号可能归因于具有强铁螯合剂(如细菌铁载体(去铁胺))的环境中的生化变化。在 4.7T 磁场的体模上对磁共振信号变化进行分析,作为原理验证,我们发现铁的存在会影响 H 和 P 信号,并且可以通过使用去铁胺进行铁螯合来恢复信号。