Advanced Imaging Research Center, University of Texas Southwestern Medical Center, Dallas, TX, USA.
CMUC, Department of Mathematics, University of Coimbra, Coimbra, Portugal.
Angew Chem Int Ed Engl. 2020 Nov 23;59(48):21671-21676. doi: 10.1002/anie.202008888. Epub 2020 Oct 6.
Paramagnetic chemical exchange saturation transfer (paraCEST) agents are well-suited for imaging tissue pH because the basis of CEST, chemical exchange, is inherently sensitive to pH. Several previous pH-sensitive paraCEST agents were based on an exchanging Ln -bound water molecule as the CEST antenna but this design often added additional line-broadening to the bulk water signal due to T exchange. We report herein a pH-sensitive paraCEST agent that lacks an inner-sphere water molecule but contains one Ln-bound -OH group for CEST activation. The Yb complex, Yb(1), displayed a single, highly shifted CEST peak originating from the exchangeable Yb-OH proton, the frequency of which changed over the biologically relevant pH range. CEST images of phantoms ranging in pH from 6 to 8 demonstrate the potential of this agent for imaging pH. Initial rodent imaging studies showed that Gd(1) remains in the vascular system much longer than anticipated but is cleared slowly via renal filtration.
顺磁化学交换饱和转移(paraCEST)试剂非常适合用于成像组织 pH 值,因为 CEST 的基础——化学交换,本质上对 pH 值敏感。之前有几种基于交换的 Ln 结合水分子作为 CEST 天线的 pH 敏感 paraCEST 试剂,但由于 T 交换,这种设计通常会给体相水信号增加额外的线宽。我们在此报告了一种缺乏内球水分子但含有一个用于 CEST 激活的 Ln 结合 -OH 基团的 pH 敏感 paraCEST 试剂。Yb 配合物 Yb(1)显示出一个单一的、高度移动的CEST 峰,源于可交换的 Yb-OH 质子,其频率在生物相关的 pH 值范围内发生变化。从 pH 值为 6 到 8 的体模的 CEST 图像证明了该试剂用于成像 pH 值的潜力。初步的啮齿动物成像研究表明,Gd(1)在血管系统中的停留时间远远超过预期,但通过肾脏过滤缓慢清除。