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Ambient Mass Spectrometry Imaging with Picosecond Infrared Laser Ablation Electrospray Ionization (PIR-LAESI)

机译:皮秒红外激光消融电喷雾电离(PIR-LAESI)的环境质谱成像

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A picosecond infrared laser (PIRL) is capable of cutting through biological tissues in the absence of significant thermal damage. As such, PIRL is a standalone surgical scalpel with the added bonus of minimal postoperative scar tissue formation. In this work, a tandem of PIRL ablation with electrospray ionization (PIR-LAESI) mass spectrometry is demonstrated and characterized for tissue molecular imaging, with a limit of detection in the range of 100 nM for reserpine or better than 5 nM for verapamil in aqueous solution. We characterized PIRL crater size using agar films containing Rhodamine. PIR-LAESI offers a 20-30 mu m vertical resolution (similar to 3 mu m removal per pulse) and a lateral resolution of similar to 100 mu m. We were able to detect 25 fmol of Rhodamine in agar ablation experiments. PIR-LAESI was used to map the distribution of endogenous methoxykaempferol glucoronide in zebra plant (Aphelandra squarrosa) leaves producing a localization map that is corroborated by the literature. PIR-LAESI was further used to image the distribution inside mouse kidneys of gadoteridol, an exogenous magnetic resonance contrast agent intravenously injected. Parallel mass spectrometry imaging (MSI) using desorption electrospray ionization (DESI) and matrix assisted laser desorption ionization (MALDI) were performed to corroborate PIR-LAESI images of the exogenous agent. We further show that PIR-LAESI is capable of desorption ionization of proteins as well as phospholipids. This comparative study illustrates that PIR-LAESI is an ion source for ambient mass spectrometry applications. As such, a future PIRL scalpel combined with secondary ionization such as ESI and mass spectrometry has the potential to provide molecular feedback to guide PIRL surgery.
机译:皮秒红外激光(PIRL)能够在没有明显热损伤的情况下穿透生物组织。因此,PIRL是一种独立的手术刀,具有手术后最小疤痕组织形成的额外好处。在这项工作中,证明了PIRL消融与电喷雾电离(PIR-LAESI)质谱联用并表征了组织分子成像,利血平的检出限范围为100 nM,维拉帕米的检出限为5 nM以上解。我们使用含有罗丹明的琼脂膜表征了PIRL火山口的大小。 PIR-LAESI的垂直分辨率为20-30微米(每个脉冲去除3微米),横向分辨率为100微米。在琼脂消融实验中,我们能够检测到25 fmol的若丹明。使用PIR-LAESI绘制斑马植物(Aphelandra squarrosa)叶片中内源性甲氧基山ol酚葡萄糖苷的分布图,得到了一个被文献证实的定位图。 PIR-LAESI进一步用于成像加多替多(gadoteridol,一种静脉内注射的外源性磁共振造影剂)在小鼠肾脏内的分布。使用解吸电喷雾电离(DESI)和基质辅助激光解吸电离(MALDI)进行并行质谱成像(MSI),以证实外源试剂的PIR-LAESI图像。我们进一步表明,PIR-LAESI能够解吸蛋白质以及磷脂的离子化。这项比较研究表明,PIR-LAESI是环境质谱应用中的离子源。因此,未来的PIRL手术刀与二次电离(例如ESI和质谱)相结合,有可能提供分子反馈来指导PIRL手术。

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