Mass spectral differentiation of positional isomers using multivariate statistics

被引:45
|
作者
Bonetti, Jennifer [1 ]
机构
[1] Virginia Dept Forens Sci, Eastern Lab, 830 Southampton Ave,Suite 400, Norfolk, VA 23510 USA
关键词
Designer drugs; Positional isomers; Multivariate analysis; GC-MS; GAS-CHROMATOGRAPHY; FENTANYL ANALOGS; SPECTROMETRY; IDENTIFICATION; DISCRIMINATION; SPECTROSCOPY; SUBSTANCE; DRUGS; ION;
D O I
10.1016/j.forc.2018.06.001
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Mass spectral analysis is considered to be a confirmatory method of analysis for the purpose of identifying controlled substances. However, the spectra of positional isomers are generally too visually similar to allow for differentiation. This study of fluoromethcathinone (FMC) and fluorofentanyl has shown that multivariate statistical analysis offers a feasible means of differentiating between electron ionization mass spectra of positional isomers. Three positional isomers of each compound (2-FMC, 3-FMC, 4-FMC, meta-fluorofentanyl, ortho-fluorofentanyl, and para-fluorofentanyl) were analyzed twice daily using gas chromatography/electron ionization mass spectrometry (GC/EI-MS) on six separate instruments over five days. This resulted in 60 mass spectra collected for each positional isomer. Principal component analysis (PCA) followed by linear discriminant analysis (LDA) was performed and successful differentiation of positional isomers was achieved. Leave-One-Sample-Out Cross Validation showed no errors for either group of isomers. Nineteen blind study samples were analyzed for each group of positional isomers with no misclassifications. Furthermore, data from previous case samples was analyzed using this method and in all cases the samples were properly attributed to the correct positional isomer. In addition to visual inspection of the LDA plots, objective classifications were conducted using the resulting posterior probabilities generated when LDA was performed. The results indicate multivariate statistical analysis is a promising addition to the analytical scheme of the identification of positional isomers. This would allow for higher confidence in the final identification of a compound without the need for additional instrumental analysis, saving laboratories both time and money. (C) 2018 Elsevier B.V. All rights reserved.
引用
收藏
页码:50 / 61
页数:12
相关论文
共 50 条
  • [31] ADVANCED TECHNIQUES FOR THE DIFFERENTIATION OF ISOMERS BY MASS SPECTROMETRY
    Penna, Tatiana C.
    Correra, Thiago C.
    QUIMICA NOVA, 2020, 43 (08): : 1125 - 1137
  • [32] Differentiation of aminomethyl corrole isomers by mass spectrometry
    Ramos, Catarina I. V.
    Graca Santana-Marques, M.
    Ferrer-Correia, A. J.
    Barata, Joana F. B.
    Tome, Augusto C.
    Neves, M. Graca P. M. S.
    Cavaleiro, J. A. S.
    Abreu, Paulo E.
    Pereira, Mariette M.
    Pais, Alberto A. C. C.
    JOURNAL OF MASS SPECTROMETRY, 2012, 47 (04): : 516 - 522
  • [33] Separation of positional isomers using chiral chromatography columns
    Osipov, A. S.
    Orlov, E. N.
    PHARMACEUTICAL CHEMISTRY JOURNAL, 2012, 46 (05) : 288 - 291
  • [34] Quantifying Positional Isomers (QPI) by Top-Down Mass Spectrometry
    Brunner, Andrea M.
    Lossl, Philip
    Geurink, Paul P.
    Ovaa, Huib
    Albanese, P.
    Altelaar, A. F. Maarten
    Heck, Albert J. R.
    Scheltema, Richard A.
    MOLECULAR & CELLULAR PROTEOMICS, 2021, 20
  • [35] Separation of positional isomers using chiral chromatography columns
    A. S. Osipov
    E. N. Orlov
    Pharmaceutical Chemistry Journal, 2012, 46 : 288 - 291
  • [36] Differentiation of AB-FUBINACA and its five positional isomers using liquid chromatography–electrospray ionization-linear ion trap mass spectrometry and triple quadrupole mass spectrometry
    Takaya Murakami
    Yoshiaki Iwamuro
    Reiko Ishimaru
    Satoshi Chinaka
    Nariaki Takayama
    Hiroshi Hasegawa
    Forensic Toxicology, 2018, 36 : 351 - 358
  • [37] Positional isomer differentiation of monoalkylated naphthalenes using principal components analysis and mass spectrometry
    Swain, D
    Winans, RE
    Dunn, WJ
    ANALYTICAL CHEMISTRY, 1996, 68 (18) : 3244 - 3249
  • [38] Differentiation of AB-FUBINACA and its five positional isomers using liquid chromatography-electrospray ionization-linear ion trap mass spectrometry and triple quadrupole mass spectrometry
    Murakami, Takaya
    Iwamuro, Yoshiaki
    Ishimaru, Reiko
    Chinaka, Satoshi
    Takayama, Nariaki
    Hasegawa, Hiroshi
    FORENSIC TOXICOLOGY, 2018, 36 (02) : 351 - 358
  • [39] Identification and quantification of hydraulic system faults based on multivariate statistics using spectral vibration features
    Helwig, Nikolai
    Klein, Steffen
    Schuetze, Andreas
    EUROSENSORS 2015, 2015, 120 : 1225 - 1228
  • [40] Electrospray ionization tandem mass spectrometric study of protonated and alkali-cationized α/ε-hybrid peptides: differentiation of a pair of dipeptide positional isomers
    Babu, A. Ramesh
    Raju, G.
    Chander, C. Purna
    Babu, B. Shoban
    Srinivas, R.
    Sharma, G. V. M.
    EUROPEAN JOURNAL OF MASS SPECTROMETRY, 2016, 22 (04) : 181 - 191