Fields of application and safe management of nuclear magnetic resonance spectroscopy in biomedicine for non-medical purposes

Iacono Maria, Trinchese Ciro, Colombo Giovanni, Iacono Chiara, Ruggiero Roberto
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Abstract

Nuclear magnetic resonance (NMR) spectroscopy has assumed a leading position among the instrumental methods used in the analysis and characterization of organic and non-organic molecules, in addition to the application of 13C and 1H high-resolution Fourier transform techniques for structural analysis of lipid components, peptides and proteins and carbohydrates. Thanks to the increasingly higher magnetic fields of the spectrometers, there has been a significant increase in resolution which has allowed us to move on to larger molecules and increasingly sophisticated techniques. Today multidimensional spectra such as the correlation spectra between 13C, 1H and 15N are routine analysis whose most common acronyms are FOCSY, NOESY and TROSY. Most of these experiments are based on the NOE (Nuclear Overhauser Effect) phenomenon which provides information on the dipolar interaction between magnetic nuclei. We will also deal with the various types of installations in relation to the safety standards that these equipment require for correct use.
核磁共振波谱在非医学生物医学中的应用领域及安全管理
除13C和1H高分辨率傅立叶变换技术应用于脂质成分、多肽、蛋白质和碳水化合物的结构分析外,核磁共振(NMR)波谱学在有机和非有机分子分析和表征的仪器方法中处于领先地位。由于光谱仪的磁场越来越强,分辨率有了显著的提高,这使我们能够继续研究更大的分子和越来越复杂的技术。目前,13C, 1H和15N之间的相关光谱等多维光谱是常规分析,其最常见的缩写是FOCSY, nosy和TROSY。这些实验大多是基于NOE(核Overhauser效应)现象,它提供了磁性原子核之间偶极相互作用的信息。我们还将处理与这些设备正确使用所需的安全标准相关的各种类型的安装。
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