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用于通过磁共振成像传感葡萄糖的基于环烯的苯基硼酸酯配体及其铕(III)配合物

Cyclen-based phenylboronate ligands and their Eu3+ complexes for sensing glucose by MRI.

作者信息

Trokowski Robert, Zhang Shanrong, Sherry A Dean

机构信息

Department of Chemistry, The University of Texas at Dallas, P.O. Box 830688, Richardson, Texas 75083-0688, USA.

出版信息

Bioconjug Chem. 2004 Nov-Dec;15(6):1431-40. doi: 10.1021/bc0498976.

Abstract

Novel cyclen-based phenylboronate ligands and their corresponding Eu(3+) complexes have been examined as glucose sensors using chemical exchange saturation transfer (CEST) MR imaging for detection. Two isomeric bis-phenylboronate complexes, Eu(4) and Eu(10), and a mono-phenylboronate complex, Eu(12), had been prepared and characterized by UV and circular dichroism spectroscopy, mass spectrometry, and CEST imaging. Both the free ligands and their Eu(3+) complexes bind to simple sugars, but their selectivity and binding affinities vary with sugar structure. Interestingly, the free ligands, 4 and 10, are selective for fructose over glucose, but this selectivity order switches in the respective Eu(3+) complexes. Of the complexes examined, Eu(4) shows the highest selectivity and binding affinity for glucose (2275 +/- 266 M(-)(1) at pH 10.2 and 339 +/- 29 M(-)(1) at pH 7). Glucose acts as a "capping"moiety in the Eu(4).glucose binary complex and modulates water exchange between a single Eu(3+)-bound water molecule and bulk water, an effect that can be detected by CEST imaging. Thus, Eu(4) represents a new class of metabolite-specific imaging agents that may allow mapping of metabolites by MRI of the bulk water signal.

摘要

新型基于环轮烯的苯基硼酸酯配体及其相应的铕(III)配合物已被作为葡萄糖传感器进行研究,采用化学交换饱和转移(CEST)磁共振成像进行检测。制备了两种异构的双苯基硼酸酯配合物Eu(4)和Eu(10)以及一种单苯基硼酸酯配合物Eu(12),并通过紫外和圆二色光谱、质谱以及CEST成像对其进行了表征。游离配体及其铕(III)配合物均能与单糖结合,但其选择性和结合亲和力会因糖的结构而异。有趣的是,游离配体4和10对果糖的选择性高于葡萄糖,但在各自的铕(III)配合物中这种选择性顺序发生了反转。在所研究的配合物中,Eu(4)对葡萄糖表现出最高的选择性和结合亲和力(在pH 10.2时为2275±266 M⁻¹,在pH 7时为339±29 M⁻¹)。葡萄糖在Eu(4)-葡萄糖二元配合物中充当“封端”部分,并调节单个与铕(III)结合的水分子与大量水分子之间的水交换,这种效应可通过CEST成像检测到。因此,Eu(4)代表了一类新型的代谢物特异性成像剂,可能允许通过对大量水信号进行磁共振成像来绘制代谢物图谱。

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