Singh Jaspal, Rustagi Vineeta, Zhang Shanrong, Sherry A Dean, Udugamasooriya D Gomika
Department of Pharmacological and Pharmaceutical Sciences, University of Houston, 3455 Cullen Blvd, Houston, TX, 77204-5037, USA.
Advanced Imaging Research Center, University of Texas Southwestern Medical Center, 5323 Harry Hines Boulevard, Dallas, TX, 75390-8568, USA.
Magn Reson Chem. 2017 Aug;55(8):747-753. doi: 10.1002/mrc.4588. Epub 2017 Mar 24.
The rate of water exchange between the inner sphere of a paramagnetic ion and bulk water is an important parameter in determining the magnitude of the chemical exchange saturation transfer signal from paramagnetic CEST agents (paraCEST). This is governed by various geometric, steric and ligand field factors created by macrocyclic ligands surrounding the paramagnetic metal ion. Our previous on-bead combinatorial studies of di-peptoid-europium(III)-1,4,7,10-tetraazacyclododecane-1,4,7,10-tetraacetic acid (DOTA)-tetraamide complexes revealed that negatively charged groups in the immediate vicinity of the metal center strongly enhances the CEST signal. Here, we report a solid phase synthesis and on-bead imaging of 76 new DOTA derivatives that are developed by coupling with a single residue onto each of the three arms of a DOTA-tetraamide scaffold attached to resin beads. This single residue predominantly carries negatively charged groups blended with various physico-chemical characteristics. We found that non-bulky negatively charged groups are best suited at the immediate vicinity of the metal ion, while positive, bulky and halogen containing moieties suppress the CEST signal. Copyright © 2017 John Wiley & Sons, Ltd.
顺磁性离子内球与本体水之间的水交换速率是决定来自顺磁性化学交换饱和转移试剂(paraCEST)的化学交换饱和转移信号强度的一个重要参数。这受围绕顺磁性金属离子的大环配体产生的各种几何、空间位阻和配体场因素的支配。我们之前对二肽类 - 铕(III)-1,4,7,10 - 四氮杂环十二烷 - 1,4,7,10 - 四乙酸(DOTA)- 四酰胺配合物的珠上组合研究表明,金属中心紧邻的带负电荷基团会强烈增强CEST信号。在此,我们报告了76种新的DOTA衍生物的固相合成及珠上成像,这些衍生物是通过将单个残基偶联到附着于树脂珠的DOTA - 四酰胺支架的三个臂上而开发的。这个单个残基主要带有兼具各种物理化学特性的带负电荷基团。我们发现,体积小的带负电荷基团最适合位于金属离子紧邻处,而带正电荷、体积大的和含卤素的部分会抑制CEST信号。版权所有© 2017约翰威立父子有限公司。