Institute of Microanalytical Systems, Department of Chemistry, Zhejiang University, Hangzhou 310058, P. R. China.
Key Laboratory for Biomedical Engineering of Ministry of Education, Zhejiang University, Hangzhou 310007, P. R. China.
Anal Chem. 2020 Jul 7;92(13):9214-9222. doi: 10.1021/acs.analchem.0c01555. Epub 2020 Jun 19.
In situ sampling mass spectrometry (MS) systems can achieve rapid analysis of samples, while most of them do not have the pretreatment capability of chromatographic separation. This Article describes the design, fabrication, and application of a swan-shaped in situ sampling MS probe with liquid chromatography (LC) separation capacity. The LC-Swan probe was fabricated based on a single capillary with a micrometer-sized hole at its U-shaped bottom for sampling, a monolithic column for separation, and a tapered tip for electrospray. Four functions including in situ sampling, sample injection, chromatographic separation, and MS electrospray were integrated in the LC-Swan probe. Direct sampling and contacting-dissolution-injection sampling modes were developed to perform in situ sampling and injection of liquid samples and dry spot samples, respectively, in the high flow-resistance LC system. A pressing-sealing method was also developed using a polydimethylsiloxane (PDMS) sealer to achieve the sealing of the probe sampling hole during the high-pressure chromatographic separation process. The LC-Swan probe-based system exhibited effective desalting capacity in the analysis of angiotensin II with similar relative standard deviations (RSDs) of retention time and peak area below 3% and 19% ( = 3) for both salt-containing and salt-free samples. The present system was applied for analyzing cytochrome C digest to test its separation capability for samples with complex compositions, and 19 peptides were detected in 13 min with an amino acid coverage of 85%. We also applied the system in metabolite analysis of mouse organ sections of brain, liver, and kidney to preliminarily demonstrate its application potential in MS imaging analysis.
原位采样质谱(MS)系统可以实现对样品的快速分析,但大多数系统没有色谱分离的预处理能力。本文介绍了一种带有液相色谱(LC)分离能力的 Swan 形原位采样 MS 探头的设计、制作和应用。LC-Swan 探头是基于带有微米级孔的单根毛细管制作的,该孔位于 U 形底部,用于采样;采用整体柱进行分离;采用锥形尖端进行电喷雾。LC-Swan 探头集成了原位采样、样品注入、色谱分离和 MS 电喷雾等四项功能。设计了直接采样和接触溶解进样两种模式,分别用于在高流速 LC 系统中对液体样品和干斑样品进行原位采样和注入。还采用聚二甲基硅氧烷(PDMS)密封垫开发了一种压合密封方法,用于在高压色谱分离过程中实现探头采样孔的密封。基于 LC-Swan 探头的系统在分析血管紧张素 II 时表现出有效的脱盐能力,对于含盐和无盐样品,保留时间和峰面积的相对标准偏差(RSD)均小于 3%和 19%(n=3)。本系统还用于分析细胞色素 C 酶解物,以测试其对复杂成分样品的分离能力,在 13 分钟内检测到 19 个肽段,氨基酸覆盖率为 85%。我们还将该系统应用于脑、肝和肾等小鼠器官切片的代谢物分析,初步证明了其在 MS 成像分析中的应用潜力。