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高浓度 MRI 造影剂对锌离子表现出优异的灵敏度。

Highly Potent MRI Contrast Agent Displaying Outstanding Sensitivity to Zinc Ions.

机构信息

MR Neuroimaging Agents, Max Planck Institute for Biological Cybernetics, Tuebingen, Germany.

Laboratory of Molecular and Cellular Neuroimaging, International Center for Primate Brain Research (ICPBR), Center for Excellence in Brain Science and Intelligence Technology (CEBSIT), Chinese Academy of Science (CAS), Shanghai, P. R. China.

出版信息

Angew Chem Int Ed Engl. 2021 Mar 8;60(11):5734-5738. doi: 10.1002/anie.202014431. Epub 2021 Jan 27.

Abstract

Zinc ions play an important role in numerous crucial biological processes in the human body. The ability to image the function of Zn would be a significant asset to biomedical research for monitoring various physiopathologies dependent on its fate. To this end, we developed a novel Gd chelate that can selectively recognize Zn over other abundant endogenous metal ions and alter its paramagnetic properties. More specifically, this lanthanide chelate displayed an extraordinary increase in longitudinal relaxivity (r ) of over 400 % upon interaction with Zn at 7 T and 25 °C, which is the greatest r enhancement observed for any of the metal ion-responsive Gd-based complexes at high magnetic field. A "turn-on" mechanism responsible for these massive changes was confirmed through NMR and luminescence lifetime studies on a C-labeled Eu analogue. This molecular platform represents a new momentum in developing highly suitable magnetic resonance imaging contrast agents for functional molecular imaging studies of Zn .

摘要

锌离子在人体的许多重要生物过程中起着重要作用。能够对 Zn 的功能进行成像将是监测依赖其命运的各种生理病理学的生物医学研究的一项重大资产。为此,我们开发了一种新型的 Gd 螯合物,它可以选择性地识别 Zn 而不是其他丰富的内源性金属离子,并改变其顺磁性质。更具体地说,这种镧系螯合物在与 Zn 相互作用时,在 7T 和 25°C 下的纵向弛豫率(r1)显著增加了超过 400%,这是在高磁场下观察到的任何金属离子响应的 Gd 基配合物的最大 r1 增强。通过对 C 标记的 Eu 类似物的 NMR 和荧光寿命研究,证实了一种负责这些巨大变化的“开启”机制。这个分子平台为开发用于 Zn 的功能分子成像研究的高适配性磁共振成像对比剂带来了新的动力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3201/7986093/9434a0208345/ANIE-60-5734-g003.jpg

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