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一种气动辅助纳喷雾解吸电喷雾电离源,可提高溶剂的多功能性,并增强从组织中检测代谢物的能力。

A pneumatically assisted nanospray desorption electrospray ionization source for increased solvent versatility and enhanced metabolite detection from tissue.

机构信息

Department of Chemistry-BMC, Uppsala University, Uppsala, Sweden.

出版信息

Analyst. 2017 Sep 8;142(18):3424-3431. doi: 10.1039/c7an00901a.

Abstract

Nanospray desorption electrospray ionization (nano-DESI) has been established as a powerful technique for mass spectrometry imaging (MSI) of biomolecules from tissue samples. The direct liquid extraction of analytes from a surface at ambient pressure negates the need for significant sample preparation or matrix application. Although many recent studies have applied nano-DESI to new and exciting applications, there has not been much work in the development and improvement of the nano-DESI source. Here, we incorporate a nebulizer to replace the self-aspirating secondary capillary in the conventional nano-DESI setup, and characterize the device by use of rat kidney tissue sections. We find that the pneumatically assisted nano-DESI device offers improved sensitivity for metabolite species by 1-3 orders of magnitude through more complete desolvation and reduced ionization suppression. Further, the pneumatically assisted nano-DESI device reduces the dependence on probe-to-surface distance and enables sampling and imaging using pure water as the nano-DESI solvent. This provides exclusive detection and imaging of many highly polar endogenous species. Overall, the developed pneumatically assisted nano-DESI device provides more versatile solvent selection and an increased sensitivity for metabolites, which generates ion images of higher contrast - allowing for more intricate studies of metabolite distribution.

摘要

纳米喷雾解吸电喷雾电离(nano-DESI)已被确立为一种从组织样本中对生物分子进行质谱成像(MSI)的强大技术。在常压下从表面直接提取分析物,无需进行大量的样品制备或基质应用。尽管许多最近的研究已经将 nano-DESI 应用于新的令人兴奋的应用,但在 nano-DESI 源的开发和改进方面并没有太多工作。在这里,我们将雾化器集成到传统 nano-DESI 装置中的自吸式二次毛细管中,并使用大鼠肾组织切片对该装置进行了表征。我们发现,气动辅助 nano-DESI 装置通过更完全的去溶剂化和减少离子抑制作用,将代谢物种类的灵敏度提高了 1-3 个数量级。此外,气动辅助 nano-DESI 装置降低了对探头到表面距离的依赖,并能够使用纯水作为 nano-DESI 溶剂进行采样和成像。这可以专门检测和成像许多高度极性的内源性物质。总体而言,开发的气动辅助 nano-DESI 装置提供了更广泛的溶剂选择和对代谢物更高的灵敏度,产生了对比度更高的离子图像 - 允许更深入地研究代谢物分布。

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