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Extraction and Separation of Chiral Amino Acids for Life Detection on Ocean Worlds Without Using Organic Solvents or Derivatization

机译:在不使用有机溶剂或衍生化的情况下对海洋世界寿命检测的手性氨基酸的提取和分离

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摘要

In situ instrumentation that can detect amino acids at parts-per-billion concentration levels and distinguish an enantiomeric excess of either d- or l-amino acids is vital for future robotic life-detection missions to promising targets in our solar system. In this article, a novel chiral amino acid analysis method is described, which reduces the risk of organic contamination and spurious signals from by-products by avoiding organic solvents and organic additives. Online solid-phase extraction, chiral liquid chromatography, and mass spectrometry were used for automated analysis of amino acids from solid and aqueous environmental samples. Carbonated water (pH ∼3, ∼5 wt % CO2 achieved at 6 MPa) was used as the extraction solvent for solid samples at 150°C and as the mobile phase at ambient temperature for chiral chromatographic separation. Of 18 enantiomeric amino acids, 5 enantiomeric pairs were separated with a chromatographic resolution 1.5 and 12 pairs with a resolution 0.7. The median lower limit of detection of amino acids was 2.5 μg/L, with the lowest experimentally verified as low as 0.25 μg/L. Samples from a geyser site (Great Fountain Geyser) and a geothermal spring site (Lemon Spring) in Yellowstone National Park were analyzed to demonstrate the viability of the method for future in situ missions to Ocean Worlds.
机译:在原位仪器中,可以检测零件 - 每亿份浓度水平的氨基酸,并区分对映体过量的D-或L-氨基酸对于未来的机器人生命检测任务至关重要的是我们太阳系中的有希望的目标。在本文中,描述了一种新型手性氨基酸分析方法,其通过避免有机溶剂和有机添加剂来降低副产物的有机污染和杂散信号的风险。在线固相提取,手性液相色谱和质谱法用于固体和含水环境样品的氨基酸自动分析。在150℃下用作固体样品的碳酸水(pH〜3,〜5wt%CO 2)用作固体样品的萃取溶剂,并在环境温度下进行手性色谱分离。在18个对映体氨基酸,5个映体对用色谱分辨率分离,& 1.5和12对,分辨率& 0.7。氨基酸检测的中值下限为2.5μg/ L,最低实验验证为低至0.25μg/升。分析了来自喷泉网站(大喷泉喷泉)和地热弹簧现场(柠檬春天)的样品,在黄石国家公园进行了分析,以展示该方法将来与海洋世界的原地任务的可行性。

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