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用于质谱成像的传输几何激光烧蚀进入非接触式液体涡旋捕获探头。

Transmission geometry laser ablation into a non-contact liquid vortex capture probe for mass spectrometry imaging.

作者信息

Ovchinnikova Olga S, Bhandari Deepak, Lorenz Matthias, Van Berkel Gary J

机构信息

Organic and Biological Mass Spectrometry Group, Chemical Sciences Division, Oak Ridge National Laboratory, Oak Ridge, TN, 37831-6131, USA.

出版信息

Rapid Commun Mass Spectrom. 2014 Aug 15;28(15):1665-73. doi: 10.1002/rcm.6946.

Abstract

RATIONALE

Capture of material from a laser ablation plume into a continuous flow stream of solvent provides the means for uninterrupted sampling, transport and ionization of collected material for coupling with mass spectral analysis. Reported here is the use of vertically aligned transmission geometry laser ablation in combination with a new non-contact liquid vortex capture probe coupled with electrospray ionization for spot sampling and chemical imaging with mass spectrometry.

METHODS

A vertically aligned continuous flow liquid vortex capture probe was positioned directly underneath a sample surface in a transmission geometry laser ablation (355 nm, 10 Hz, 7 ns pulse width) set up to capture into solution the ablated material. The outlet of the vortex probe was coupled to the Turbo V™ ion source of an AB SCIEX TripleTOF 5600+ mass spectrometer. System operation and performance metrics were tested using inked patterns and thin tissue sections. Glass slides and slides designed especially for laser capture microdissection, viz., DIRECTOR(®) slides and PEN 1.0 (polyethylene naphthalate) membrane slides, were used as sample substrates.

RESULTS

The estimated capture efficiency of laser-ablated material was 24%, which was enabled by the use of a probe with large liquid surface area (~2.8 mm(2) ) and with gravity to help direct ablated material vertically down towards the probe. The swirling vortex action of the liquid surface potentially enhanced capture and dissolution not only of particulates, but also of gaseous products of the laser ablation. The use of DIRECTOR(®) slides and PEN 1.0 (polyethylene naphthalate) membrane slides as sample substrates enabled effective ablation of a wide range of sample types (basic blue 7, polypropylene glycol, insulin and cyctochrome c) without photodamage using a UV laser. Imaging resolution of about 6 µm was demonstrated for stamped ink on DIRECTOR(®) slides based on the ability to distinguish features present both in the optical and in the chemical image. This imaging resolution was 20 times better than the previous best reported results with laser ablation/liquid sample capture mass spectrometry imaging. Using thin sections of brain tissue the chemical image of a selected lipid was obtained with an estimated imaging resolution of about 50 µm.

CONCLUSIONS

A vertically aligned, transmission geometry laser ablation liquid vortex capture probe, electrospray ionization mass spectrometry system provides an effective means for spatially resolved spot sampling and imaging with mass spectrometry.

摘要

原理

将激光烧蚀羽流中的物质捕获到连续流动的溶剂流中,为所收集物质的不间断采样、传输和离子化提供了手段,以便与质谱分析相结合。本文报道了垂直排列的透射几何激光烧蚀与一种新型非接触式液体涡旋捕获探针相结合的应用,该探针与电喷雾电离相结合,用于质谱的点采样和化学成像。

方法

在透射几何激光烧蚀(355nm,10Hz,7ns脉冲宽度)装置中,将垂直排列的连续流动液体涡旋捕获探针直接放置在样品表面下方,以将烧蚀物质捕获到溶液中。涡旋探针的出口与AB SCIEX TripleTOF 5600+质谱仪的Turbo V™离子源相连。使用墨水图案和薄组织切片测试系统操作和性能指标。玻璃载玻片以及专门为激光捕获显微切割设计的载玻片,即DIRECTOR(®)载玻片和PEN 1.0(聚萘二甲酸乙二酯)膜载玻片,用作样品基质。

结果

激光烧蚀物质的估计捕获效率为24%,这得益于使用具有大液体表面积(约2.8mm²)且利用重力帮助将烧蚀物质垂直向下导向探针的探针。液体表面的涡旋作用不仅可能增强对颗粒的捕获和溶解,还可能增强对激光烧蚀气态产物的捕获和溶解。使用DIRECTOR(®)载玻片和PEN 1.0(聚萘二甲酸乙二酯)膜载玻片作为样品基质,能够在不使用紫外激光造成光损伤的情况下有效烧蚀多种样品类型(碱性蓝7、聚丙二醇、胰岛素和细胞色素c)。基于能够区分光学图像和化学图像中存在的特征,DIRECTOR(®)载玻片上冲压墨水的成像分辨率约为6µm。该成像分辨率比之前报道的激光烧蚀/液体样品捕获质谱成像的最佳结果好20倍。使用脑组织薄片获得了选定脂质的化学图像,估计成像分辨率约为50µm。

结论

垂直排列的透射几何激光烧蚀液体涡旋捕获探针、电喷雾电离质谱系统为质谱的空间分辨点采样和成像提供了一种有效手段。

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