Hu Shundi, Habib Ahsan, Xiong Wei, Chen La, Bi Lei, Wen Luhong
The Research Institute of Advanced Technologies, Ningbo University, Ningbo, Zhejiang, China.
China Innovation Instrument Co., Ltd, Ningbo, Zhejiang, China.
Crit Rev Anal Chem. 2024 Jun 18:1-54. doi: 10.1080/10408347.2024.2362703.
Molecular information can be acquired from sample surfaces in real time using a revolutionary molecular imaging technique called mass spectrometry imaging (MSI). The technique can concurrently provide high spatial resolution information on the spatial distribution and relative proportion of many different compounds. Thus, many scientists have been drawn to the innovative capabilities of the MSI approach, leading to significant focus in various fields during the past few decades. This review describes the sampling protocol, working principle and applications of a few non-ambient and ambient ionization mass spectrometry imaging techniques. The non-ambient techniques include secondary ionization mass spectrometry and matrix-assisted laser desorption ionization, while the ambient techniques include desorption electrospray ionization, laser ablation electrospray ionization, probe electro-spray ionization, desorption atmospheric pressure photo-ionization and femtosecond laser desorption ionization. The review additionally addresses the advantages and disadvantages of ambient and non-ambient MSI techniques in relation to their suitability, particularly for biological samples used in tissue diagnostics. Last but not least, suggestions and conclusions are made regarding the challenges and future prospects of MSI.
利用一种名为质谱成像(MSI)的革命性分子成像技术,可以实时从样本表面获取分子信息。该技术能够同时提供关于许多不同化合物的空间分布和相对比例的高空间分辨率信息。因此,许多科学家被MSI方法的创新能力所吸引,在过去几十年里,该方法在各个领域都受到了极大关注。这篇综述描述了几种非常压和常压电离质谱成像技术的采样方案、工作原理及应用。非常压技术包括二次离子质谱和基质辅助激光解吸电离,而常压技术包括解吸电喷雾电离、激光烧蚀电喷雾电离、探针电喷雾电离、解吸大气压光电离和飞秒激光解吸电离。该综述还讨论了常压和非常压MSI技术在适用性方面的优缺点,特别是对于组织诊断中使用的生物样本。最后但同样重要的是,针对MSI的挑战和未来前景提出了建议和结论。