Department of Chemistry, University of Illinois Urbana-Champaign, Urbana, Illinois 61801, United States.
Beckman Institute for Advanced Science and Technology, University of Illinois Urbana-Champaign, Urbana, Illinois 61801, United States.
Anal Chem. 2023 Apr 25;95(16):6732-6739. doi: 10.1021/acs.analchem.3c00612. Epub 2023 Apr 11.
Approaches for the characterization of proteins/peptides in single cells of formaldehyde-fixed (FF) tissues via mass spectrometry (MS) are still under development. The lack of a general method for selectively eliminating formaldehyde-induced crosslinking is a major challenge. A workflow is shown for the high-throughput peptide profiling of single cells isolated from FF tissues, here the rodent pancreas, which possesses multiple peptide hormones from the islets of Langerhans. The heat treatment is enhanced by a collagen-selective multistep thermal process assisting efficient isolation of islets from the FF pancreas and, subsequently, their dissociation into single islet cells. Hydroxylamine-based chemical decrosslinking helped restore intact peptide signals from individual isolated cells. Subsequently, an acetone/glycerol-assisted cell dispersion was optimized for spatially resolved cell deposition onto glass slides, while a glycerol solution maintained the hydrated state of the cells. This sample preparation procedure allowed peptide profiling in FF single cells by fluorescence-guided matrix-assisted laser desorption ionization MS. Here, 2594 single islet cells were analyzed and 28 peptides were detected, including insulin C-peptides and glucagon. T-distributed stochastic neighbor embedding (t-SNE) data visualization demonstrated that cells cluster based on cell-specific pancreatic peptide hormones. This workflow expands the sample availability for single-cell MS characterization to a wide range of formaldehyde-treated tissue specimens stored in biobanks.
通过质谱(MS)对甲醛固定(FF)组织中单细胞中的蛋白质/肽进行特征分析的方法仍在开发中。缺乏选择性消除甲醛诱导的交联的通用方法是一个主要挑战。这里展示了一种用于从 FF 组织中分离的单细胞进行高通量肽分析的工作流程,此处是啮齿动物胰腺,其具有来自胰岛的多种肽激素。热处理通过胶原选择性多步热过程得到增强,该过程有助于从 FF 胰腺中高效分离胰岛,然后将其解离为单个胰岛细胞。基于羟胺的化学去交联有助于从单个分离细胞中恢复完整的肽信号。随后,优化了丙酮/甘油辅助的细胞分散,以实现空间分辨的细胞沉积到载玻片上,同时甘油溶液保持细胞的水合状态。这种样品制备程序允许通过荧光引导的基质辅助激光解吸电离 MS 对 FF 单细胞中的肽进行分析。在这里,分析了 2594 个单个胰岛细胞,检测到 28 种肽,包括胰岛素 C 肽和胰高血糖素。t 分布随机邻域嵌入(t-SNE)数据分析表明,细胞根据细胞特异性胰腺肽激素聚类。该工作流程将单细胞 MS 特征分析的样本可用性扩展到生物库中储存的各种经甲醛处理的组织标本。