KU Leuven, Department of Chemistry, Celestijnenlaan 200F, 3001 Heverlee, Belgium.
Dalton Trans. 2014 Mar 7;43(9):3589-600. doi: 10.1039/c3dt52842a.
The synthesis and characterization of two novel DTPA bisamide derivatives DTPA-BC12PheA and DTPA-BC14PheA functionalized with p-dodecylaniline and p-tetradecylaniline are described. The ligands were coordinated to Gd(iii) and Eu(iii), resulting in highly paramagnetic and luminescent complexes, respectively. Mixed micelles consisting of Gd/Eu-DTPA-BC12PheA and DTPA-BC14PheA with a homogeneous size distribution (33-40 nm) were prepared by the assembly of the amphiphilic complexes with phospholipid DPPC and a surfactant Tween 80®. Taking into account the sensitivity difference between magnetic resonance and optical imaging techniques, the ratios of Gd and Eu complexes (Gd/Eu) 1 : 1, 2 : 1, 3 : 1, 20 : 1 and 50 : 1 were combined in one single micelle and their optical and relaxometric properties were characterized in detail. Upon excitation at 290 nm, the micelles display characteristic red emission bands due to the (5)D0→(7)FJ (J = 0-4) transitions of Eu(iii). The number of water molecules in the first coordination sphere of Eu(iii) (qEu = 0.1-0.2) was calculated from the lifetime measurements performed in H2O and D2O solutions. Micelles composed of exclusively europium complexes display quantum yields in the range of 1.0%, decreasing with the europium concentration when going from 1 : 1 to 50 : 1 Gd/Eu contents. The ligand-to-lanthanide sensitization efficiency for micelles consisting of Eu-DTPA-BC12PheA and Eu-DTPA-BC14PheA equals 3.8% and 4.1%, respectively. The relaxivity r1 per Gd(iii) ion at 40 MHz and 310 K reaches a maximum value of 14.2 s(-1) mM(-1) for the Gd-DTPA-BC12PheA assemblies and 16.0 s(-1) mM(-1) for the micellar Gd-DTPA-BC14PheA assemblies compared to a value of 3.5 s(-1) mM(-1) for Gd-DTPA (Magnevist®). Theoretical fitting of the (1)H NMRD profiles results in τR values of 4.2 to 6.6 ns. The optimal concentration ratio of Gd/Eu compounds in the micelles in order to provide the required bimodal performance has been determined to be 20 : 1. In the search for other bimodal systems, this discovery can be used as a guideline concerning the load of paramagnetic agents with respect to luminescent probes.
描述了两种新型 DTPA 双酰胺衍生物 DTPA-BC12PheA 和 DTPA-BC14PheA 的合成与表征。这些配体与 Gd(iii) 和 Eu(iii) 配位,分别得到高顺磁性和发光配合物。通过将两亲性配合物与磷脂 DPPC 和表面活性剂 Tween 80® 组装,制备了由 Gd/Eu-DTPA-BC12PheA 和 DTPA-BC14PheA 组成的具有均匀尺寸分布(33-40nm)的混合胶束。考虑到磁共振和光学成像技术之间的灵敏度差异,将 Gd 和 Eu 配合物(Gd/Eu)1:1、2:1、3:1、20:1 和 50:1 的比例组合在一个胶束中,并详细表征了它们的光学和弛豫性能。在 290nm 激发下,由于 Eu(iii)的(5)D0→(7)FJ(J=0-4)跃迁,胶束显示出特征的红色发射带。通过在 H2O 和 D2O 溶液中进行寿命测量,计算了 Eu(iii)的第一配位球中的水分子数(qEu=0.1-0.2)。仅由铕配合物组成的胶束的量子产率在 1.0%范围内,当 Gd/Eu 含量从 1:1 变为 50:1 时,量子产率降低。由 Eu-DTPA-BC12PheA 和 Eu-DTPA-BC14PheA 组成的胶束的配体到镧系元素的敏化效率分别为 3.8%和 4.1%。在 40MHz 和 310K 下,每 Gd(iii)离子的弛豫率 r1 达到最大值,Gd-DTPA-BC12PheA 组装体为 14.2s(-1)mM(-1),胶束 Gd-DTPA-BC14PheA 组装体为 16.0s(-1)mM(-1),而 Gd-DTPA(Magnevist®)的值为 3.5s(-1)mM(-1)。(1)H NMRD 谱的理论拟合得到 4.2 到 6.6ns 的 τR 值。为了提供所需的双模性能,已经确定了胶束中 Gd/Eu 化合物的最佳浓度比为 20:1。在寻找其他双模系统时,这一发现可以作为一个准则,即考虑顺磁剂相对于发光探针的负载。