Environmental NMR Center, Department of Physical and Environmental Sciences, University of Toronto, Toronto, Ontario, Canada.
Magn Reson Chem. 2020 May;58(5):427-444. doi: 10.1002/mrc.4832. Epub 2019 Apr 2.
Traditionally, due to different hardware requirements, nuclear magnetic resonance (NMR) has developed as two separate fields: one dealing with solids, and one with solutions. Comprehensive multiphase (CMP) NMR combines all electronics and hardware (magic angle spinning [MAS], gradients, high power Radio Frequency (RF) handling, lock, susceptibility matching) into a universal probe that permits a comprehensive study of all phases (i.e., liquid, gel-like, semisolid, and solid), in intact samples. When applied in vivo, it provides unique insight into the wide array of bonds in a living system from the most mobile liquids (blood, fluids) through gels (muscle, tissues) to the most rigid (exoskeleton, shell). In this tutorial, the practical aspects of in vivo CMP NMR are discussed including: handling the organisms, rotor preparation, sample spinning, water suppression, editing experiments, and finishes with a brief look at the potential of other heteronuclei ( H, N, F, P) for in vivo research. The tutorial is aimed as a general resource for researchers interested in developing and applying MAS-based approaches to living organisms. Although the focus here is CMP NMR, many of the approaches can be adapted (or directly applied) using conventional high-resolution magic angle spinning, and in some cases, even standard solid-state NMR probes.
传统上,由于硬件要求的不同,核磁共振(NMR)已经发展成为两个独立的领域:一个处理固体,另一个处理溶液。综合多相(CMP)NMR 将所有电子和硬件(魔角旋转[MAS]、梯度、高功率射频[RF]处理、锁、磁化率匹配)组合到一个通用探头中,该探头允许对所有相(即液体、凝胶状、半固态和固态)进行全面研究,而无需对完整样品进行任何处理。当应用于体内时,它提供了对活系统中各种键的独特见解,从最具流动性的液体(血液、体液)到凝胶(肌肉、组织)再到最硬的物质(外骨骼、壳)。在本教程中,将讨论体内 CMP NMR 的实际应用,包括:处理生物体、转子制备、样品旋转、水抑制、编辑实验,最后简要介绍其他异核(H、N、F、P)在体内研究中的潜力。本教程旨在为有兴趣开发和应用基于 MAS 的方法研究活体生物的研究人员提供一般资源。尽管这里的重点是 CMP NMR,但许多方法可以通过常规高分辨率魔角旋转进行改编(或直接应用),在某些情况下,甚至可以直接应用标准固态 NMR 探头。