Department of Chemistry, University of Minnesota, Minneapolis, MN 55455, USA.
Dalton Trans. 2018 Aug 21;47(33):11346-11357. doi: 10.1039/c8dt01172a.
Two thulium-based ParaCEST responsive contrast agents, Tm-DOTAm-py and Tm-DOTAm-βAla-py, have been synthesized and evaluated for imaging copper and zinc. Unusual for responsive MRI contrast agents, both agents display a complete on/off response in the presence of transition metals. Both complexes function as paraCEST agents in the absence of copper and zinc, with the positively charged Tm-DOTAm-py being more sensitive than the neutrally charged Tm-DOTAm-βAla-py. In each case, the CEST signal arises from amide protons rather than from a water molecule coordinated to Tm3+ ions. Upon binding to Cu+, Cu2+, or Zn2+, the exchange rate of the amide protons increases substantially, resulting in a complete loss of the CEST signal. This efficient mode of action along with the lack of inner-sphere water molecules both in the presence and absence of transition metals was confirmed by 1/T1 NMRD profiles, 17O NMR measurements, and molecular modelling simulations. Neither complex is selective for copper over zinc. Both form either a 1 : 1 TmL : Cu+ or a 2 : 1 TmL : Cu2+ and TmL : Zn2+ complexes with binding affinities comparable to that of other responsive MRI contrast agents and sensitivity comparable to that of other CEST contrast agents.
两种基于铥的 ParaCEST 响应对比剂,Tm-DOTAm-py 和 Tm-DOTAm-βAla-py,已被合成并用于铜和锌的成像研究。与响应性 MRI 对比剂不同,这两种试剂在存在过渡金属时均表现出完全的开/关响应。这两种配合物在没有铜和锌的情况下都可以作为 ParaCEST 试剂,带正电荷的 Tm-DOTAm-py 比中性的 Tm-DOTAm-βAla-py 更灵敏。在每种情况下,CEST 信号均来自酰胺质子,而不是与 Tm3+ 离子配位的水分子。与 Cu+、Cu2+或 Zn2+结合后,酰胺质子的交换速率大大增加,导致 CEST 信号完全丢失。这种高效的作用模式以及在存在和不存在过渡金属时都没有内球水分子,通过 1/T1 NMRD 谱、17O NMR 测量和分子建模模拟得到了证实。这两种配合物对铜都没有选择性,而是形成 1:1 TmL:Cu+或 2:1 TmL:Cu2+和 TmL:Zn2+配合物,其结合亲和力与其他响应性 MRI 对比剂相当,灵敏度与其他 CEST 对比剂相当。