School of Chemistry and Biochemistry, Georgia Institute of Technology, 901 Atlantic Drive NW, Atlanta, GA, 30332, USA.
J Am Soc Mass Spectrom. 2019 Apr;30(4):647-658. doi: 10.1007/s13361-018-2118-4. Epub 2019 Jan 7.
Laser-induced acoustic desorption coupled to microplasma-based atmospheric pressure photoionization (LIAD-APPI) using a nebulized sweep jet to aid in dopant introduction and ion transmission has been applied to the analysis of model, apolar lipid compounds. Specifically, several sterols, sterol esters, and triacylglycerols were detected using dopants such as anisole and toluene. Additionally, several triacylglycerols, sterols, carboxylic acids, and hopanoids were detected from complex mixtures of olive oil and Australian shale rock extract as a first demonstration of the applicability of LIAD-APPI on real-world samples. Detection limits using a sweep jet configuration for α-tocopherol and cholesterol were found to be 609 ± 61 and 292 ± 29 fmol, respectively. For sterol esters and triacylglycerols with a large number of double bonds in the fatty acid chain, LIAD-APPI was shown to yield greater molecular ion or [M+NH] abundances than those with saturated fatty acid chains. Dopants such as anisole and toluene, with ionization potentials (IPs) of 8.2 and 8.8 eV, respectively, were tested. A greater degree of fragmentation with several of the more labile test compounds was observed using toluene. Overall, LIAD-APPI with a nebulized sweep jet requires minimal sample preparation and is a generally useful and sensitive analysis technique for low-polarity mixtures of relevance to biochemical assays and geochemical profiling. Graphical Abstract.
采用雾化扫喷技术辅助引入掺杂剂和离子传输的激光诱导声学解吸耦合微等离子体常压光电离(LIAD-APPI)已应用于模型非极性脂质化合物的分析。具体来说,使用苯甲醚和甲苯等掺杂剂检测了几种甾醇、甾醇酯和三酰基甘油。此外,还从橄榄油和澳大利亚页岩岩提取物的复杂混合物中检测到了几种三酰基甘油、甾醇、羧酸和藿烷类化合物,首次证明了 LIAD-APPI 在实际样品中的适用性。使用扫喷配置检测 α-生育酚和胆固醇的检测限分别为 609±61 和 292±29 fmol。对于脂肪酸链中含有大量双键的甾醇酯和三酰基甘油,LIAD-APPI 产生的分子离子或 [M+NH]+丰度大于具有饱和脂肪酸链的分子离子或 [M+NH]+丰度。测试了苯甲醚和甲苯等具有 8.2 和 8.8 eV 电离势 (IP) 的掺杂剂。使用甲苯时,观察到几种更不稳定的测试化合物的碎片程度更大。总体而言,采用雾化扫喷技术的 LIAD-APPI 只需进行最少的样品制备,是一种对生物化学分析和地球化学分析具有普遍意义且灵敏的分析技术,可用于分析低极性混合物。