Kiryutin Alexey S, Yurkovskaya Alexandra V, Ivanov Konstantin L
International Tomography Center, Siberian Branch of the Russian Academy of Sciences, Institutskaya str. 3a, Novosibirsk, 630090, Russia.
Novosibirsk State University, Pirogova str. 1, Novosibirsk, 630090, Russia.
Chemphyschem. 2021 Jul 16;22(14):1470-1477. doi: 10.1002/cphc.202100315. Epub 2021 Jun 11.
Signal Amplification By Reversible Exchange (SABRE) is gaining increased attention as a tool to enhance weak Nuclear Magnetic Resonance (NMR) signals. In SABRE, spin order is transferred from parahydrogen (H in its nuclear singlet spin state) to a substrate molecule in a transient Ir-based complex. In recent years, SABRE polarization of biologically active substrates has been demonstrated, notably of metronidazole - an antibiotic and antiprotozoal drug. In this work, we study N SABRE polarization of metronidazole at natural isotope abundance. We are able to demonstrate significant N polarization reaching 15 %, which corresponds to a signal enhancement of 46,000 at 9.4 T for the nitrogen atom with lone electron pair. Additionally, the other two N-atoms can be polarized, although less efficiently. We present a detailed study of the field dependence of polarization and explain the maxima in the field dependence using the concept of coherent polarization transfer at level anti-crossings in the SABRE complex. A study of spin relaxation phenomena presented here enables optimization of the magnetic field for efficient storage of non-thermal polarization.
通过可逆交换进行信号放大(SABRE)作为增强微弱核磁共振(NMR)信号的一种工具正日益受到关注。在SABRE中,自旋序从仲氢(处于核单重态自旋状态的H)转移至瞬态铱基配合物中的底物分子。近年来,已证实生物活性底物的SABRE极化,尤其是甲硝唑(一种抗生素和抗原虫药物)的极化。在这项工作中,我们研究了天然同位素丰度下甲硝唑的氮SABRE极化。我们能够证明显著的氮极化达到15%,这对应于在9.4 T时具有孤对电子的氮原子信号增强了46000倍。此外,另外两个氮原子也可以极化,尽管效率较低。我们对极化的场依赖性进行了详细研究,并使用SABRE配合物中能级反交叉处的相干极化转移概念解释了场依赖性中的最大值。这里对自旋弛豫现象的研究有助于优化磁场,以有效存储非热极化。