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冠醚掺杂剂可减少离子抑制并提高液体微连接表面采样探针的检测性能。

Crown ether dopant to reduce ion suppression and improve detection in the liquid microjunction surface sampling probe.

机构信息

Department of Chemistry, Queen's University, Kingston, Ontario, Canada.

School of Computing, Queen's University, Kingston, Ontario, Canada.

出版信息

Rapid Commun Mass Spectrom. 2024 Oct 30;38(20):e9889. doi: 10.1002/rcm.9889.

Abstract

RATIONALE

Sodium and potassium are required in agar media for the growth of some microorganisms (e.g., marine bacteria). However, alkali cations are a significant source of contamination for mass spectrometry causing ion suppression and adduct formation. Conventionally, salts can be removed before mass spectrometric analysis with appropriate and often lengthy sample preparation. The direct mass spectrometric sampling of bacterial colonies grown on agar media seeks to minimize or eliminate sample preparation to improve workflow. However, this may exacerbate ion suppression and contamination since these metal cations will degrade spectral quality and limit the rapid profiling of microbial metabolites. Different approaches are needed to sequester sodium and potassium ions to minimize unwanted background interferences. Herein, we use crown ethers (CEs) in combination with a liquid microjunction surface sampling probe (LMJ-SSP) to directly sample the surface of the bacterial colonies from two marine bacteria species (Pseudoalteromonas rubra DSM6842 and Pseudoalteromonas tunicata DSM 14096). CEs (e.g., 18-crown-6 or 15-crown-5) are added to the carrier solvent of the LMJ-SSP, the chemical noise is reduced, and spectra are easier to interpret.

METHODS

The liquid microjunction formed at the tip of LMJ-SSP was used to directly touch bacterial colonies on agar. The carrier solvent was either methanol (100%) or methanol: HO (50:49.9%) with or without 0.01% CEs. Information-theoretic measures are employed to investigate qualitative changes between spectra before and after adding CEs.

RESULTS

Our work demonstrates the capability of CEs to reduce background interferences within the direct profiling of bacterial colonies from agar plates. The data obtained from both P. rubra DSM6842 and P. tunicata DSM 14096 show that CEs can be used to mitigate the salty background and improve compound detection.

CONCLUSION

Our approach can be implemented in natural product discovery using LMJ-SSP to allow fast and accurate detection of interesting/novel compounds.

摘要

原理

钠和钾是琼脂培养基中一些微生物(如海洋细菌)生长所必需的。然而,碱金属阳离子是质谱分析中污染的一个重要来源,会导致离子抑制和加合物形成。传统上,在进行质谱分析之前,可以使用适当的、通常是冗长的样品制备来去除盐。直接对琼脂培养基上生长的细菌菌落进行质谱采样,旨在尽量减少或消除样品制备,以改善工作流程。然而,这可能会加剧离子抑制和污染,因为这些金属阳离子会降低光谱质量,并限制微生物代谢物的快速分析。需要采取不同的方法来螯合钠离子和钾离子,以尽量减少不必要的背景干扰。在这里,我们使用冠醚(CEs)与液体微结表面采样探针(LMJ-SSP)相结合,直接从两种海洋细菌(红色假交替单胞菌 DSM6842 和衣藻假交替单胞菌 DSM 14096)的细菌菌落表面采样。CEs(例如 18-冠-6 或 15-冠-5)添加到 LMJ-SSP 的载液中,可降低化学噪声,使光谱更容易解释。

方法

LMJ-SSP 尖端形成的液体微结用于直接接触琼脂上的细菌菌落。载液为甲醇(100%)或甲醇:HO(50:49.9%),或添加或不添加 0.01%CEs。使用信息论措施来研究添加 CEs 前后光谱之间的定性变化。

结果

我们的工作证明了 CEs 能够降低琼脂平板上直接分析细菌菌落时的背景干扰。从红色假交替单胞菌 DSM6842 和衣藻假交替单胞菌 DSM 14096 获得的数据表明,CEs 可用于减轻咸味背景并提高化合物检测。

结论

我们的方法可以在使用 LMJ-SSP 进行天然产物发现中实施,以允许快速准确地检测有趣/新型化合物。

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