Olatunde Abiola O, Cox Jordan M, Daddario Michael D, Spernyak Joseph A, Benedict Jason B, Morrow Janet R
Department of Chemistry, University at Buffalo, State University of New York , 359 Natural Sciences Complex, Amherst, New York 14260, United States.
Inorg Chem. 2014 Aug 18;53(16):8311-21. doi: 10.1021/ic5006083. Epub 2014 May 13.
The solution chemistry and solid-state structures of the Co(II), Fe(II), and Ni(II) complexes of 7,13-bis(carbamoylmethyl)-1,4,10-trioxa-7,13-diazacyclopentadecane (L) are reported as members of a new class of paramagnetic chemical exchange saturation transfer (paraCEST) MRI contrast agents that contain transition metal ions. Crystallographic data show that nitrogen and oxygen donor atoms of the macrocyclic ligand coordinate to the metal ions to generate complexes with distorted pentagonal bipyramidal geometry for [Co(L)]Cl2·2H2O or Fe(L)2. The Ni(II) complex Ni(L)2·H2O features a hexadentate ligand in a distorted octahedral geometry. The proton NMR spectra of all three complexes show highly dispersed and relatively sharp proton resonances. The complexes were further characterized by monitoring their dissociation under biologically relevant conditions including solutions containing phosphate and carbonate, ZnCl2, or acidic conditions. Solutions of the paraCEST agents in 20 mM N-(2-hydroxyethyl)piperazine-N'-ethanesulfonic acid (pH 7.4) and 100 mM NaCl showed highly shifted and intense CEST peaks at 59, 72, and 92 ppm away from bulk water for Co(L), Ni(L), and Fe(L), respectively at 37 °C on a 11.7 T NMR spectrometer. CEST spectra with corresponding rate constants for proton exchange are reported in 4% agarose gel (w/w), rabbit serum, egg white, or buffered solutions. CEST phantoms of 4 mM complex in buffer, 4% agarose gel (w/w), or rabbit serum on a 4.7 T MRI scanner at 37 °C, are compared. The most substantial change was observed for the reactive Ni(L), which showed reduced CEST contrast in rabbit serum and egg white. The complexes with the least highly shifted CEST peaks (Co(L) and Ni(L)) showed a reduction in CEST contrast in 4% agarose gel (w/w) compared to that in buffered solutions, while the CEST effect for Fe(L) in 4% agarose gel (w/w) was not substantially different.
报道了7,13 - 双(氨甲酰甲基)-1,4,10 - 三氧杂 - 7,13 - 二氮杂环十五烷(L)的钴(II)、铁(II)和镍(II)配合物的溶液化学和固态结构,它们是一类新型含过渡金属离子的顺磁化学交换饱和转移(paraCEST)MRI造影剂的成员。晶体学数据表明,大环配体的氮和氧供体原子与金属离子配位,生成[Co(L)]Cl2·2H2O或Fe(L)2,其几何形状为扭曲的五角双锥。镍(II)配合物Ni(L)2·H2O具有扭曲八面体几何形状的六齿配体。所有三种配合物的质子核磁共振谱显示出高度分散且相对尖锐的质子共振。通过监测它们在生物相关条件下的解离情况进一步表征了这些配合物,这些条件包括含有磷酸盐、碳酸盐、ZnCl2的溶液或酸性条件。在11.7 T核磁共振仪上,37℃时,[Co(L)](2 +)、[Ni(L)](2 +)和[Fe(L)](2 +)的paraCEST剂在20 mM N -(2 - 羟乙基)哌嗪 - N'-乙磺酸盐(pH 7.4)和100 mM NaCl溶液中,CEST峰分别从大量水中偏移59、72和92 ppm,且强度很高。报道了在4%琼脂糖凝胶(w/w)、兔血清、蛋清或缓冲溶液中具有相应质子交换速率常数的CEST谱。比较了在37℃下用4.7 T MRI扫描仪对缓冲液、4%琼脂糖凝胶(w/w)或兔血清中4 mM配合物的CEST体模。观察到反应性最强的[Ni(L)](2 +)变化最为显著,它在兔血清和蛋清中的CEST对比度降低。CEST峰偏移最小的配合物([Co(L)](2 +)和[Ni(L)](2 +))在4%琼脂糖凝胶(w/w)中的CEST对比度相对于缓冲溶液有所降低,而[Fe(L)](2 +)在4%琼脂糖凝胶(w/w)中的CEST效应没有显著差异。