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Small Molecule Ambient Mass Spectrometry Imaging by Infrared Laser Ablation Metastable-Induced Chemical Ionization

机译:红外激光烧蚀亚稳诱导化学电离的小分子环境质谱成像

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Presented here is a novel ambient ion source termed infrared laser ablation metastable-induced chemical ionization (IR-LAMICI). IR-LAMICI integrates IR laser ablation and direct analysis in real time (DART)-type meta-stable-induced chemical ionization for open air mass spectrometry (MS) ionization. The ion generation in the IR-LAMICI source is a two step process. First, IR laser pulses impinge the sample surface ablating surface material. Second, a portion of ablated material reacts with the metastable reactive plume facilitating gas-phase chemical ionization of analyte molecules generating protonated or deprotonated species in positive and negative ion modes, respectively. The successful coupling of IR-laser ablation with metastable-induced chemical ionization resulted in an ambient plasma-based spatially resolved small molecule imaging platform for mass spectrometry (MS). The analytical capabilities of IR-LAMICI are explored by imaging pharmaceutical tablets, screening counterfeit drugs, and probing algal tissue surfaces for natural products. The resolution of a chemical image is determined by the crater size produced with each laser pulse but not by the size of the metastable gas jet. The detection limits for an active pharmaceutical ingredient (acetaminophen) using the IR-LAMICI source is calculated to be low picograms. Furthermore, three-dimensional computational fluid dynamic simulations showed improvements in the IR-LAMICI ion source are possible.
机译:这里介绍的是一种新型的环境离子源,称为红外激光烧蚀亚稳诱导化学电离(IR-LAMICI)。 IR-LAMICI集成了IR激光烧蚀和实时(DART)型亚稳定诱导化学电离的直接分析,用于露天质谱(MS)电离。 IR-LAMICI源中的离子生成过程分为两个步骤。首先,IR激光脉冲撞击样品表面烧蚀表面材料。其次,一部分被烧蚀的材料与亚稳态反应羽流发生反应,从而促进了分析物分子的气相化学电离,从而分别以正离子和负离子模式产生了质子化或去质子化的物质。 IR激光烧蚀与亚稳诱导的化学电离的成功耦合导致了基于质谱的环境等离子体基于空间分辨的小分子成像平台(MS)。 IR-LAMICI的分析能力通过对药物片剂进行成像,筛选假冒药物以及对藻类组织表面进行天然产物探测来探索。化学图像的分辨率取决于每个激光脉冲产生的弹坑大小,而不取决于亚稳态气体射流的大小。使用IR-LAMICI来源的活性药物成分(对乙酰氨基酚)的检出限经计算为低皮克。此外,三维计算流体动力学模拟表明,改进IR-LAMICI离子源是可能的。

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