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水合唑 CEST:基于腙的化学交换饱和传递磁共振成像对比剂。

Hydrazo-CEST: Hydrazone-Dependent Chemical Exchange Saturation Transfer Magnetic Resonance Imaging Contrast Agents.

机构信息

Department of Chemistry & Biomolecular Sciences, University of Ottawa, Ottawa, ON, Canada.

University of Ottawa Heart Institute, Ottawa, ON, Canada.

出版信息

Chemistry. 2018 Jun 26;24(36):9148-9156. doi: 10.1002/chem.201801671. Epub 2018 Jun 6.

DOI:10.1002/chem.201801671
PMID:29645309
Abstract

The rapid formation of hydrazones under physiological conditions was exploited for the detection of aldehydes through chemical exchange saturation transfer magnetic resonance imaging (CEST-MRI). A metal-free, diamagnetic contrast agent derived from N-amino anthranilic acid was introduced, which selectively "turned-on" upon hydrazone formation through an effect termed Hydrazo-CEST. While the hydrazine form of the probe produced no CEST-MRI signal enhancement, the formation of the aryl hydrazone resulted in >20 % intensity decrease in the bulk water signal through the CEST effect, as measured by 300 MHz H NMR, 3 T and 7 T MRI. Both the electronic contributions of the N-amino anthranilate and the aldehyde binding partner were shown to directly impact the exchange rate of the proton on the ring-proximal nitrogen, and thus the imaging signal. Additionally, the presence of the carboxylic acid moiety ortho to the hydrazine was necessary not only for contrast production, but also for rapid hydrazone formation and prolonged hydrazone product stability under physiological conditions. This work provided the first example of an MRI-based contrast agent capable of a "turn on" response upon reaction with bioactive aldehydes, and outlined both the structural and electronic requirements to expand on Hydrazo-CEST, a novel, hydrazone-dependent subtype of diamagnetic CEST-MRI.

摘要

在生理条件下迅速形成腙,可用于通过化学交换饱和传递磁共振成像(CEST-MRI)检测醛。引入了一种无金属的反磁性对比剂,源自 N-氨基邻氨基苯甲酸,通过一种称为 Hydrazo-CEST 的效应,在形成腙时选择性地“开启”。虽然探针的腙形式不会产生 CEST-MRI 信号增强,但通过 CEST 效应,芳族腙的形成会导致体相水中信号的强度降低超过 20%,这是通过 300 MHz H NMR、3 T 和 7 T MRI 测量的。N-氨基邻氨基苯甲酸的电子贡献以及醛结合伴侣都被证明直接影响环近氮质子的交换速率,从而影响成像信号。此外,腙的邻位羧酸部分不仅对于产生对比是必要的,而且对于在生理条件下快速形成腙和延长腙产物稳定性也是必要的。这项工作提供了第一个基于 MRI 的对比剂的例子,该对比剂在与生物活性醛反应时能够产生“开启”响应,并概述了扩展 Hydrazo-CEST 的结构和电子要求,Hydrazo-CEST 是一种新型的、依赖腙的反磁性 CEST-MRI 亚型。

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