Characterization of nonpolar lipids and selected steroids by using laser-induced acoustic desorption/chemical ionization, atmospheric pressure chemical ionization, and electrospray ionization mass spectrometry

被引:16
作者
Jin, Zhicheng [1 ]
Daiya, Shivani [2 ]
Kenttaemaa, Hilkka I. [1 ]
机构
[1] Purdue Univ, Dept Chem, W Lafayette, IN 47907 USA
[2] Purdue Univ, Sch Chem Engn, W Lafayette, IN 47907 USA
基金
美国国家卫生研究院;
关键词
LIAD; Chemical ionization; Nonpolar lipids; Steroids; APCI; ESI; Aquachloromanganese ion; FT-ICR; Linear quadrupole ion trap; CAROTENOID ESTERS; FATTY-ACIDS; CHROMATOGRAPHY; CHOLESTEROL; MATRIX; POLAR; DERIVATIZATION; HYDROCARBONS; CLMN(H2O)(+); DERIVATIVES;
D O I
10.1016/j.ijms.2010.11.001
中图分类号
O64 [物理化学(理论化学)、化学物理学]; O56 [分子物理学、原子物理学];
学科分类号
070203 ; 070304 ; 081704 ; 1406 ;
摘要
Laser-induced acoustic desorption (LIAD) combined with CIMn(H(2)O)(+) chemical ionization (CI) was tested for the analysis of nonpolar lipids and selected steroids in a Fourier-transform ion cyclotron resonance mass spectrometer (FT-ICR). The nonpolar lipids studied, cholesterol, 5 alpha-cholestane, cholesta-3,5-diene, squalene,and beta-carotene, were found to solely form the desired water replacement product (adduct-H(2)O) upon reaction with the CIMn(H(2)O)(+) ions. The steroids, androsterone, dehydroepiandrosterone (DHEA), estrone, estradiol, and estriol, also form abundant adduct-H(2)O ions, but less abundant adduct-2H(2)O ions were also observed. Neither (+)APCI nor (+)ESI can ionize the saturated hydrocarbon lipid, cholestane. APCI successfully ionizes the unsaturated hydrocarbon lipids to form exclusively the intact protonated analytes. However, it causes extensive fragmentation for cholesterol and the steroids. The worst case is cholesterol that does not produce any stable protonated molecules. On the other hand. ESI cannot ionize any of the hydrocarbon analytes, saturated or unsaturated. However, ESI can be used to protonate the oxygen-containing analytes with substantially less fragmentation than for APCI in all cases except for cholesterol and estrone. In conclusion, LIAD/CIMn(H(2)O)(+) chemical ionization is superior over APCI and ESI for the mass spectrometric characterization of underivatized nonpolar lipids and steroids. (C) 2010 Elsevier B.V. All rights reserved.
引用
收藏
页码:234 / 239
页数:6
相关论文
共 50 条
  • [1] Laser-Induced Acoustic Desorption/Atmospheric Pressure Chemical Ionization Mass Spectrometry
    Gao, Jinshan
    Borton, David J., II
    Owen, Benjamin C.
    Jin, Zhicheng
    Hurt, Matt
    Amundson, Lucas M.
    Madden, Jeremy T.
    Qian, Kuangnan
    Kenttaemaa, Hilkka I.
    JOURNAL OF THE AMERICAN SOCIETY FOR MASS SPECTROMETRY, 2011, 22 (03) : 531 - 538
  • [2] Contribution of atmospheric pressure chemical ionization mass spectrometry for the characterization of bio-oils from lignocellulosic biomass: Comparison with electrospray ionization and atmospheric pressure photoionization
    Mase, Charlotte
    Hubert-Roux, Marie
    Afonso, Carlos
    Giusti, Pierre
    JOURNAL OF ANALYTICAL AND APPLIED PYROLYSIS, 2022, 167
  • [3] Laser-induced acoustic desorption/chemical ionization in Fourier-transform ion cyclotron resonance mass spectrometry
    Pérez, J
    Ramírez-Arizmendi, LE
    Petzold, CJ
    Guler, LP
    Nelson, ED
    Kenttämaa, HI
    INTERNATIONAL JOURNAL OF MASS SPECTROMETRY, 2000, 198 (03) : 173 - 188
  • [4] Flame-induced atmospheric pressure chemical ionization mass spectrometry
    Cheng, Sy-Chyi
    Chen, Yen-Ting
    Jhang, Siou-Sian
    Shiea, Jentaie
    RAPID COMMUNICATIONS IN MASS SPECTROMETRY, 2016, 30 (07) : 890 - 896
  • [5] Development of a High-Throughput Laser-Induced Acoustic Desorption Probe and Raster Sampling For Laser-Induced Acoustic Desorption/Atmospheric Pressure Chemical Ionization
    Borton, David J.
    Amundson, Lucas M.
    Hurt, Matthew R.
    Dow, Alex
    Madden, Jeremy T.
    Simpson, Garth J.
    Kenttaemaa, Hilkka I.
    ANALYTICAL CHEMISTRY, 2013, 85 (12) : 5720 - 5726
  • [6] Electrospray ionization and atmospheric pressure matrix-assisted laser desorption/ionization mass spectrometry of antioxidants applied in lubricants
    Kassler, Alexander
    Pittenauer, Ernst
    Doerr, Nicole
    Allmaier, Guenter
    RAPID COMMUNICATIONS IN MASS SPECTROMETRY, 2009, 23 (24) : 3917 - 3927
  • [7] Nanoelectrode Atmospheric Pressure Chemical Ionization Mass Spectrometry
    Auvil, Nicole C.
    Bier, Mark E.
    JOURNAL OF THE AMERICAN SOCIETY FOR MASS SPECTROMETRY, 2024, 35 (10) : 2288 - 2296
  • [8] Carbon disulfide reagent allows the characterization of nonpolar analytes by atmospheric pressure chemical ionization mass spectrometry
    Owen, Benjamin C.
    Gao, Jinshan
    Borton, David J., II
    Amundson, Lucas M.
    Archibold, Enada F.
    Tan, Xiaoli
    Azyat, Khalid
    Tykwinski, Rik
    Gray, Murray
    Kenttaemaa, Hilkka I.
    RAPID COMMUNICATIONS IN MASS SPECTROMETRY, 2011, 25 (14) : 1924 - 1928
  • [9] High-performance liquid chromatography with atmospheric pressure chemical ionization and electrospray ionization mass spectrometry for analysis of Angelica sinensis
    Wang, Ya-Li
    Liang, Yi-Zeng
    Chen, Ben-Mei
    PHYTOCHEMICAL ANALYSIS, 2007, 18 (04) : 265 - 274
  • [10] Assessing Relative Electrospray Ionization, Atmospheric Pressure Photoionization, Atmospheric Pressure Chemical Ionization, and Atmospheric Pressure Photo- and Chemical Ionization Efficiencies in Mass Spectrometry Petroleomic Analysis via Pools and Pairs of Selected Polar Compound Standards
    Pudenzi, Marcos A.
    Eberlin, Marcos N.
    ENERGY & FUELS, 2016, 30 (09) : 7125 - 7133