Keun Hector
Department of Surgery and Cancer, Imperial College London, South Kensington, London, United Kingdom.
Methods Enzymol. 2014;543:297-313. doi: 10.1016/B978-0-12-801329-8.00015-5.
Magic angle spinning nuclear magnetic resonance (MAS-NMR) spectroscopy offers a convenient means for the rapid determination of metabolic profiles from intact malignant tissues with high resolution. The implementation of MAS-NMR spectroscopy requires minimal sample processing, hence being compatible with complementary histological or biochemical analyses. The metabolites routinely detected in (1)H MAS-NMR spectra can simultaneously inform on many of the metabolic alterations that characterize malignant cells, including altered choline metabolism and the so-called Warburg effect. Clinical MAS-NMR profiles have been attributed with diagnostic or prognostic value, correlating to disease subtype, tumor stage/grade, response to chemotherapy, and patient survival. Herein, the scientific rationale behind MAS-NMR and its utility for translational cancer research and patient stratification is summarized. Moreover, a basic protocol for the analysis of tumor samples by MAS-NMR spectroscopy is detailed.
魔角旋转核磁共振(MAS-NMR)光谱法为从完整恶性组织中快速测定具有高分辨率的代谢谱提供了一种便捷手段。MAS-NMR光谱法的实施所需的样品处理极少,因此与补充性组织学或生化分析兼容。在氢质子(¹H)MAS-NMR光谱中常规检测到的代谢物可同时反映出许多表征恶性细胞的代谢改变,包括胆碱代谢改变和所谓的瓦伯格效应。临床MAS-NMR谱已被认为具有诊断或预后价值,与疾病亚型、肿瘤分期/分级、化疗反应和患者生存率相关。本文总结了MAS-NMR背后的科学原理及其在转化癌症研究和患者分层中的应用。此外,还详细介绍了通过MAS-NMR光谱法分析肿瘤样品的基本方案。