Institute of Zoology, Chinese Academy of Sciences, Beijing, China.
Institute for Stem Cell and Regeneration, Chinese Academy of Sciences, Beijing, China.
Sci Adv. 2023 Feb 3;9(5):eadd0455. doi: 10.1126/sciadv.add0455.
Skeletal muscle myofibers are heterogeneous in their metabolism. However, metabolomic profiling of single myofibers has remained difficult. Mass spectrometry imaging (MSI) is a powerful tool for imaging molecular distributions. In this work, we optimized the workflow of matrix-assisted laser desorption/ionization (MALDI)-based MSI from cryosectioning to metabolomics data analysis to perform high-spatial resolution metabolomic profiling of slow- and fast-twitch myofibers. Combining the advantages of MSI and liquid chromatography-MS (LC-MS), we produced spatial metabolomics results that were more reliable. After the combination of high-spatial resolution MSI and LC-MS metabolomic analysis, we also discovered a new subtype of superfast type 2B myofibers that were enriched for fatty acid oxidative metabolism. Our technological workflow could serve as an engine for metabolomics discoveries, and our approach has the potential to provide critical insights into the metabolic heterogeneity and pathways that underlie fundamental biological processes and disease states.
骨骼肌肌纤维在代谢上具有异质性。然而,对单个肌纤维的代谢组学分析一直很困难。质谱成像(MSI)是一种用于成像分子分布的强大工具。在这项工作中,我们优化了从冷冻切片到代谢组学数据分析的基于基质辅助激光解吸/电离(MALDI)的 MSI 工作流程,以对慢肌和快肌纤维进行高空间分辨率代谢组学分析。结合 MSI 和液相色谱-MS(LC-MS)的优势,我们获得了更可靠的空间代谢组学结果。在高空间分辨率 MSI 和 LC-MS 代谢组学分析相结合之后,我们还发现了一种富含脂肪酸氧化代谢的新型超快速 2B 型肌纤维亚型。我们的技术工作流程可以作为代谢组学发现的引擎,我们的方法有可能为基础生物学过程和疾病状态的代谢异质性和途径提供关键见解。