Olaru A M, Burns M J, Green G G R, Duckett S B
Centre for Hyperpolarisation in Magnetic Resonance , Department of Chemistry , University of York , YO10 5NY , York , UK . Email:
York Neuroimaging Centre , University of York , YO10 5NY , York , UK.
Chem Sci. 2017 Mar 1;8(3):2257-2266. doi: 10.1039/c6sc04043h. Epub 2016 Dec 7.
In this work we describe how the signal enhancements obtained through the SABRE process in methanol- solution are significantly affected by pH. Nicotinic acid (vitamin B3, ) is used as the agent, and changing pH is shown to modify the level of polarisation transfer by over an order of magnitude, with significant improvements being seen in terms of the signal amplitude and relaxation rate at high pH values. These observations reveal that manipulating pH to improve SABRE enhancements levels may improve the potential of this method to quantify low concentrations of analytes in mixtures. H NMR spectroscopy results link this change to the form of the SABRE catalyst, which changes with pH, resulting in dramatic changes in the magnitude of the ligand exchange rates. The presented data also uses the fact that the chemical shifts of the nicotinic acids NMR resonances are affected by pH to establish that hyperpolarised H-based pH mapping with SABRE is possible. Moreover, the strong polarisation transfer field dependence shown in the amplitudes of the associated higher order longitudinal terms offers significant opportunities for the rapid detection of hyperpolarised in HO itself without solvent suppression. H and C MRI images of hyperpolarised vitamin B3 in a series of test phantoms are presented that show pH dependent intensity and contrast. This study therefore establishes that when the pH sensitivity of is combined with the increase in signal gain provided for by SABRE hyperpolarisation, a versatile pH probe results.
在这项工作中,我们描述了在甲醇溶液中通过SABRE过程获得的信号增强如何受到pH值的显著影响。使用烟酸(维生素B3)作为试剂,结果表明,改变pH值可使极化转移水平改变超过一个数量级,在高pH值下,信号幅度和弛豫率有显著改善。这些观察结果表明,通过调节pH值来提高SABRE增强水平,可能会提高该方法定量混合物中低浓度分析物的潜力。1H NMR光谱结果将这种变化与SABRE催化剂的形式联系起来,其会随pH值变化,导致配体交换速率的大小发生显著变化。所呈现的数据还利用了烟酸NMR共振的化学位移受pH值影响这一事实,来证明利用SABRE进行基于超极化氢的pH映射是可行的。此外,相关高阶纵向项幅度中显示的强极化转移场依赖性,为在不进行溶剂抑制的情况下快速检测水中的超极化物质提供了重要机会。展示了一系列测试模型中超极化维生素B3的1H和13C MRI图像,这些图像显示了强度和对比度与pH值有关。因此,本研究确定,当物质的pH敏感性与SABRE超极化提供的信号增益增加相结合时,就会产生一种通用的pH探针。