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首页> 外文期刊>European journal of mass spectrometry >Tissue imaging with in situ solid-phase extraction micro-funnel based spray ionization mass spectrometry
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Tissue imaging with in situ solid-phase extraction micro-funnel based spray ionization mass spectrometry

机译:用原位固相提取微漏斗基的喷射电离质谱法成像

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>Current imaging mass spectrometry techniques are faced with a major challenge related to ion suppression effect. Data regarding low-abundance components or low-polarity compounds cannot be normally obtained presumably because of the discrimination effect of easily ionized chemical components on desorption/ionization process. In this study, a new method was proposed to obtain images of chemical components in biological tissues or sections through in situ solid-phase extraction in sorbent mounted micro-funnel based spray ionization mass spectrometry. An imprint of a strawberry section was formed by gently pressing against a 2D array of micro-funnels. The sorbent mounted micro-funnels were then subjected to in situ single-pixel solid-phase extraction to alleviate the matrix-related ion suppression effect. The achievable spatial resolution is approximately 250?μm. The imaging of the spatial distribution of low-abundance or low-polarity chemicals in the strawberry imprint could be obtained by using a gradient elution strategy. Results demonstrated that the “not observed” remark does not necessarily indicate that a specific compound is non-existent when traditional imaging mass spectrometry techniques are used. The proposed method can be applied to conduct low-abundance chemical imaging through in situ single-pixel sample pretreatment.
机译: >电流成像质谱技术面临与离子抑制效应相关的主要挑战。由于易于电离化学成分对解吸/电离过程的辨别效果,通常不能获得关于低丰度组分或低极性化合物的数据。在该研究中,提出了一种新方法,以通过在吸附剂安装的微漏斗基的喷射电离质谱法中原位固相萃取在生物组织或切片中获得生物组织或切片的图像。通过轻轻按压2D微型漏风来形成草莓部分的压印。然后对吸附剂安装的微漏风进行原位单像素固相提取,以缓解基质相关的离子抑制效果。可实现的空间分辨率约为250Ωμm。通过使用梯度洗脱策略可以获得草莓印记中低丰度或低极性化学物质的空间分布的成像。结果表明,“未观察到”的备注不一定表明,当使用传统的成像质谱技术时,不一定表明特定化合物是不存在的。该方法可以应用于通过原位单像素样品预处理进行低丰度化学成像。

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