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基质辅助激光解吸电离质谱引导的液相微萃取与毛细管电泳-电喷雾电离质谱联用分析单个胰岛细胞。

MALDI MS Guided Liquid Microjunction Extraction for Capillary Electrophoresis-Electrospray Ionization MS Analysis of Single Pancreatic Islet Cells.

机构信息

Department of Chemistry and the Beckman Institute, and ‡Department of Molecular and Integrative Physiology, University of Illinois , Urbana-Champaign, Illinois 61801, United States.

出版信息

Anal Chem. 2017 Jul 18;89(14):7765-7772. doi: 10.1021/acs.analchem.7b01782. Epub 2017 Jul 6.

Abstract

The ability to characterize chemical heterogeneity in biological structures is essential to understanding cellular-level function in both healthy and diseased states, but these variations remain difficult to assess using a single analytical technique. While mass spectrometry (MS) provides sufficient sensitivity to measure many analytes from volume-limited samples, each type of mass spectrometric analysis uncovers only a portion of the complete chemical profile of a single cell. Matrix-assisted laser desorption/ionization (MALDI) MS and capillary electrophoresis electrospray ionization (CE-ESI)-MS are complementary analytical platforms frequently utilized for single-cell analysis. Optically guided MALDI MS provides a high-throughput assessment of lipid and peptide content for large populations of cells, but is typically nonquantitative and fails to detect many low-mass metabolites because of MALDI matrix interferences. CE-ESI-MS allows quantitative measurements of cellular metabolites and increased analyte coverage, but has lower throughput because the electrophoretic separation is relatively slow. In this work, the figures of merit for each technique are combined via an off-line method that interfaces the two MS systems with a custom liquid microjunction surface sampling probe. The probe is mounted on an xyz translational stage, providing 90.6 ± 0.6% analyte removal efficiency with a spatial targeting accuracy of 42.8 ± 2.3 μm. The analyte extraction footprint is an elliptical area with a major diameter of 422 ± 21 μm and minor diameter of 335 ± 27 μm. To validate the approach, single rat pancreatic islet cells were rapidly analyzed with optically guided MALDI MS to classify each cell into established cell types by their peptide content. After MALDI MS analysis, a majority of the analyte remains for follow-up measurements to extend the overall chemical coverage. Optically guided MALDI MS was used to identify individual pancreatic islet α and β cells, which were then targeted for liquid microjunction extraction. Extracts from single α and β cells were analyzed with CE-ESI-MS to obtain qualitative information on metabolites, including amino acids. Matching the molecular masses and relative migration times of the extracted analytes and related standards allowed identification of several amino acids. Interestingly, dopamine was consistently detected in both cell types. The results demonstrate the successful interface of optical microscopy-guided MALDI MS and CE-ESI-MS for sequential chemical profiling of individual, mammalian cells.

摘要

在健康和疾病状态下,对生物结构中的化学异质性进行特征描述对于理解细胞水平的功能至关重要,但这些变化仍然难以使用单一分析技术进行评估。尽管质谱 (MS) 具有足够的灵敏度来测量来自体积有限的样本中的许多分析物,但每种类型的质谱分析仅揭示了单个细胞完整化学特征的一部分。基质辅助激光解吸/电离 (MALDI) MS 和毛细管电泳电喷雾电离 (CE-ESI)-MS 是常用于单细胞分析的互补分析平台。光学引导的 MALDI MS 为大量细胞的脂质和肽含量提供了高通量评估,但通常是非定量的,并且由于 MALDI 基质干扰而无法检测到许多低质量代谢物。CE-ESI-MS 允许对细胞代谢物进行定量测量,并增加分析物的覆盖范围,但由于电泳分离相对较慢,因此通量较低。在这项工作中,通过一种离线方法将每种技术的优点相结合,该方法通过定制的液体微连接表面采样探针将两个 MS 系统接口。探针安装在 xyz 平移台上,具有 90.6±0.6%的分析物去除效率和 42.8±2.3 μm 的空间靶向精度。分析物提取足迹是一个椭圆形区域,其长径为 422±21 μm,短径为 335±27 μm。为了验证该方法,快速分析了单个大鼠胰岛细胞,通过其肽含量将每个细胞分类为已建立的细胞类型。在 MALDI MS 分析之后,大部分分析物仍然存在,以便进行后续测量以扩展整体化学覆盖范围。光学引导的 MALDI MS 用于鉴定单个胰岛 α 和 β 细胞,然后针对液体微连接提取对其进行靶向。从单个 α 和 β 细胞中提取的提取物通过 CE-ESI-MS 进行分析,以获得代谢物的定性信息,包括氨基酸。提取分析物和相关标准的分子质量和相对迁移时间的匹配允许鉴定几种氨基酸。有趣的是,多巴胺在两种细胞类型中都被一致检测到。结果表明,成功地将光学显微镜引导的 MALDI MS 和 CE-ESI-MS 接口用于对单个哺乳动物细胞进行顺序化学分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f4bc/5518278/0da415a20980/ac-2017-017825_0005.jpg

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