首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >PNAS Plus: Delivering strong 1H nuclear hyperpolarization levels and long magnetic lifetimes through signal amplification by reversible exchange
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PNAS Plus: Delivering strong 1H nuclear hyperpolarization levels and long magnetic lifetimes through signal amplification by reversible exchange

机译:PNAS Plus:通过可逆交换信号放大提供强大的1H核超极化水平和长磁寿命

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摘要

Hyperpolarization turns typically weak NMR and MRI responses into strong signals so that ordinarily impractical measurements become possible. The potential to revolutionize analytical NMR and clinical diagnosis through this approach reflect this area's most compelling outcomes. Methods to optimize the low-cost parahydrogen-based approach signal amplification by reversible exchange with studies on a series of biologically relevant nicotinamides and methyl nicotinates are detailed. These procedures involve specific 2H labeling in both the agent and catalyst and achieve polarization lifetimes of ca. 2 min with 50% polarization in the case of methyl-4,6-d2-nicotinate. Because a 1.5-T hospital scanner has an effective 1H polarization level of just 0.0005% this strategy should result in compressed detection times for chemically discerning measurements that probe disease. To demonstrate this technique’s generality, we exemplify further studies on a range of pyridazine, pyrimidine, pyrazine, and isonicotinamide analogs that feature as building blocks in biochemistry and many disease-treating drugs.
机译:超极化通常将弱的NMR和MRI响应转变为强信号,因此通常不切实际的测量成为可能。通过这种方法革新分析NMR和临床诊断的潜力反映了该领域最引人注目的成果。详细介绍了通过与一系列生物学相关的烟酰胺和烟酸甲酯进行可逆交换来优化低成本基于对氢的方法信号放大的方法。这些步骤涉及在试剂和催化剂中进行特定的 2 H标记,并实现约2的极化寿命。对于4,6-d2-烟酸甲酯,在50%极化下进行2分钟。因为1.5吨医院扫描仪的有效 1 H极化水平仅为0.0005%,所以此方法应缩短检测时间,以减少对疾病进行化学识别的测量。为了证明该技术的普遍性,我们举例说明了对一系列哒嗪,嘧啶,吡嗪和异烟酰胺类似物的进一步研究,这些类似物在生物化学和许多治疗疾病的药物中具有重要作用。

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