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基于质谱的磷脂成像:方法与发现。

Mass spectrometry-based phospholipid imaging: methods and findings.

机构信息

Department of Cellular & Molecular Anatomy, Hamamatsu University School of Medicine , Hamamatsu, Shizuoka, Japan.

International Mass Imaging Center, Hamamatsu University School of Medicine , Hamamatsu, Shizuoka, Japan.

出版信息

Expert Rev Proteomics. 2020 Nov-Dec;17(11-12):843-854. doi: 10.1080/14789450.2020.1880897. Epub 2021 Feb 8.

DOI:10.1080/14789450.2020.1880897
PMID:33504247
Abstract

: Imaging is a technique used for direct visualization of the internal structure or distribution of biomolecules of a living system in a two-dimensional or three-dimensional fashion. Phospholipids are important structural components of biological membranes and have been reported to be associated with various human diseases. Therefore, the visualization of phospholipids is crucial to understand the underlying mechanism of cellular and molecular processes in normal and diseased conditions. : Mass spectrometry imaging (MSI) has enabled the label-free imaging of individual phospholipids in biological tissues and cells. The commonly used MSI techniques include matrix-assisted laser desorption ionization-MSI (MALDI-MSI), desorption electrospray ionization-MSI (DESI-MSI), and secondary ion mass spectrometry (SIMS) imaging. This special report described those methods, summarized the findings, and discussed the future development for the imaging of phospholipids. : Phospholipids imaging in complex biological samples has been significantly benefited from the development of MSI methods. In MALDI-MSI, novel matrix that produces homogenous crystals exclusively with polar lipids is important for phospholipids imaging with greater efficiency and higher spatial resolution. DESI-MSI has the potential of live imaging of the biological surface while SIMS is expected to image at the subcellular level in the near future.

摘要

成像技术用于以二维或三维方式直接可视化活体系统的生物分子的内部结构或分布。磷脂是生物膜的重要结构组成部分,并且已被报道与各种人类疾病相关。因此,磷脂的可视化对于理解正常和患病条件下细胞和分子过程的潜在机制至关重要。

质谱成像 (MSI) 已经能够对生物组织和细胞中的单个磷脂进行无标记成像。常用的 MSI 技术包括基质辅助激光解吸电离-MS(MALDI-MS)、解吸电喷雾电离-MS(DESI-MS)和二次离子质谱(SIMS)成像。本特别报告介绍了这些方法,总结了研究结果,并讨论了用于磷脂成像的未来发展。

MSI 方法的发展极大地促进了复杂生物样本中的磷脂成像。在 MALDI-MS 中,产生仅具有极性脂质的均匀晶体的新型基质对于以更高的效率和更高的空间分辨率进行磷脂成像非常重要。DESI-MS 具有对生物表面进行实时成像的潜力,而 SIMS 有望在不久的将来在亚细胞水平进行成像。

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