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Investigating the Potential of Ion Mobility-Mass Spectrometry for Microalgae Biomass Characterization

机译:研究微藻生物质表征离子迁移率质谱的电位

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摘要

Algae biomass is formed by an extremely complex set of metabolites, and its molecular characterization has been very challenging. We report the characterization of microalgae extracts via traveling wave ion mobility-mass spectrometry (TWIM-MS) by two different analysis strategies. First, the extracts were analyzed by direct infusion electrospray ionization (ESI) with no previous chromatographic separation (DI-ESI-TVVIM-MS). Second, the samples were screened for metabolites and lipids using an untargeted high-throughput method that employs ultrahigh-performance liquid chromatography (UHPLC) using data-independent analysis (DIA) MSE (UHPLC-HDMSE). Sixteen different microalgae biomasses were evaluated by both strategies. DI-ESI-TWIM-MS was able, via distinct drift times, to set apart different classes of metabolites, with the differences in the profiles of each microalga readily evident. With the UHPLC-HDMSE approach, 1251 different compounds were putatively annotated across 16 samples with 210 classified as lipids. From the normalized abundance for each annotated compound category, a detailed profiling in terms of metabolites, lipids, and lipid classes of each sample was performed. The reported workflow represents a powerful tool to determine the most suitable biotechnological applications for a given alga type and may allow for real-time monitoring of the algae composition distribution as a function of growth conditions, feedstocks, and the like. The determination of collision cross section results in improved confidence in the identification of triacylglycerols in samples, highly applicable to biofuels production. The two analysis strategies explored in this work offer powerful tools for the biomass industry by aiding in the identification of ideal strains and culture conditions for a specific application, saving analysis time and facilitating identification of a large number of constituents at once.
机译:藻类生物质由极其复杂的代谢物组形成,其分子表征一直非常具有挑战性。通过两种不同的分析策略,通过行波离子迁移率 - 质谱(TWIM-MS)报告微藻提取物的表征。首先,通过直接输注电喷雾电离(ESI)分析提取物,没有先前的色谱分离(DI-ESI-TVVIM-MS)。其次,使用使用数据无关的分析(Dia)MSE(UHPLC-HDMSE)使用超高性能液相色谱(UHPLC)的未标准高通量方法,筛选样品的代谢物和脂质。通过两种策略评估了16种不同的微藻生物量。 Di-ESI-TWIM-MS通过独特的漂移时间能够分开不同类别的代谢物,每个微藻的差异很大程度上明显。通过UHPLC-HDMSE方法,1251种不同的化合物在16个样品中借助于16个样品,其中210分为脂质。从每个注释的复合类别的归一化丰度,进行各种样品的代谢物,脂质和脂质类方面的详细分析。报告的工作流代表了一种强大的工具,用于确定给定藻类类型的最合适的生物技术应用,并且可以允许作为生长条件,原料等的函数的藻类组成分布的实时监测。碰撞横截面的测定导致改善对样品中三酰基甘油的识别的置信度,高度适用于生物燃料生产。这项工作探索的两项分析策略通过帮助识别特定应用的理想菌株和培养条件,节省分析时间并促进一次识别大量成分的识别,为生物质制度提供了强大的工具。

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  • 来源
    《Analytical chemistry》 |2019年第14期|共11页
  • 作者单位

    Natl Inst Metrol Qual &

    Technol INMETRO Div Chem &

    Thermal Metrol Lab Organ Anal BR-25250020 Duque De Caxias RJ Brazil;

    Waters Corp MS Applicat &

    Dev Lab BR-06455000 Barueri SP Brazil;

    Georgetown Univ Dept Biochem &

    Mol &

    Cellular Biol Washington DC 20007 USA;

    Natl Inst Metrol Qual &

    Technol INMETRO Div Chem &

    Thermal Metrol Lab Organ Anal BR-25250020 Duque De Caxias RJ Brazil;

    Natl Inst Metrol Qual &

    Technol INMETRO Div Chem &

    Thermal Metrol Lab Organ Anal BR-25250020 Duque De Caxias RJ Brazil;

    Natl Inst Technol INT Microalgal Biotechnol Lab BR-20081312 Rio De Janeiro RJ Brazil;

    Univ Prebiteriana Mackenzie Sch Engn BR-01302907 Sao Paulo SP Brazil;

    Natl Inst Metrol Qual &

    Technol INMETRO Div Chem &

    Thermal Metrol Lab Organ Anal BR-25250020 Duque De Caxias RJ Brazil;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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