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On-stage liquid-phase lipid microextraction coupled to nanospray mass spectrometry for detailed, nano-scale lipid analysis

机译:液相液相脂质微萃取与纳米喷雾质谱联用,可进行详细的纳米级脂质分析

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RATIONALE Developments in instrumentation aimed at microscopic sampling have led to an emphasis on applications analyzing small volumes and molecular concentrations within biological, chemical, and industrial samples. Simultaneous improvements in the sensitivity and versatility of nanospray mass spectrometers have made it possible to directly couple these sampling and analysis processes. METHODS We developed a versatile liquid-phase lipid microextraction (LPME) technique for nanoliter to microliter volumes that is amenable to direct nanospray mass spectrometry (NMS). Lipophilic analytes within several types of biological samples were extracted and analyzed by partitioning and concentrating the analytes based on their solubility within two immiscible or partially miscible liquid phases. RESULTS The utility of LPME-NMS is demonstrated by extracting and analyzing molecules in four different types of applications: (1) visualization of an extracted neutral lipid-specific fluorescent dye from an aqueous solvent; (2) identification of controlled acid-catalyzed hydrolysis of triacylglycerols within nanospray capillaries; (3) reproducible sampling of a fatty acid emulsion; and (4) profiling of diverse lipids in a complex biological matrix of rabbit serum. CONCLUSIONS The modified instrumentation of a multi-port, on-stage bioworkstation shows considerable versatility by combining nanomanipulation, microextraction and direct NMS for a variety of chemical, biological, industrial, and clinical applications.
机译:理性的分析旨在进行显微采样的仪器的发展导致人们侧重于分析生物,化学和工业样品中小体积和分子浓度的应用。纳米喷雾质谱仪在灵敏度和多功能性上的同时改进,使得直接耦合这些采样和分析过程成为可能。方法我们开发了一种适用于纳升至微升体积的通用液相脂质微萃取(LPME)技术,该技术适用于直接纳米喷雾质谱(NMS)。通过根据分析物在两种不混溶或部分混溶的液相中的溶解度进行分配和浓缩,可以提取和分析几种生物样品中的亲脂性分析物。结果通过在四种不同类型的应用中提取和分析分子,证明了LPME-NMS的实用性:(1)可视化从水性溶剂中提取的中性脂质特异性荧光染料; (2)鉴定纳米喷雾毛细管中三酰基甘油的受控酸催化水解; (3)可重复采样的脂肪酸乳液; (4)在兔血清的复杂生物基质中分析各种脂质。结论通过将纳米操作,微萃取和直接NMS相结合,可对多种化学,生物学,工业和临床应用进行组合的多端口,舞台生物工作站的改进仪器显示出可观的多功能性。

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