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18. Masson P, Alves AC, Ebbels TMD, et al. Optimization
and evaluation of metabolite extraction protocols for
untargeted metabolic pro
studies using UPLC combined with oaToF-MS: effects
of different papers and sample storage stability.
Bioanalysis 2011;
ling of
liver samples by
:2757 e 67.
3
:7779 e 86.
19. Masson P, Spagou K, Nicholson JK, et al. Technical and
biological variation in UPLC-MS-based untargeted
metabolic pro
UPLC-MS. Anal Chem 2010;
31.
Idborg H, Zamani L, Edlund PO, et al. Metabolic
82
fingerprinting of rat urine by LC/MS: Part 1. Analysis
by hydrophilic interaction liquid chromatography-
electrospray ionization mass spectrometry. J Chroma-
togr B 2005;
ling of liver extracts: application in an
experimental
toxicity study on galactosamine. Anal
:9 e 13.
32. Gika HG, Theodoridis GA, Wilson ID. Hydrophilic
interaction and reversed-phase ultra-performance
liquid chromatography TOF-MS for metabonomic
analysis of Zucker rat urine. J Sep Sci 2008;
828
:382 e 90.
20. Loftus N, Barnes A, Ashton S, et al. Metabonomic inves-
tigation of liver pro
Chem 2011;
83
les of non-polar metabolites obtained
from alcohol-dosed rats and mice using high mass accu-
racy MS n analysis. JProteomeRes2011;
:1598 e 608.
33. Spagou K, Tsoukali H, Raikos N, et al. Hydrophilic
interaction chromatography coupled to MS
31
:705 e 13.
21. Plumb RS, Rainville P, Smith BW, et al. Generation of
ultrahigh peak capacity LC separations via elevated
temperatures and high linear mobile-phase velocities.
Anal Chem 2006;
10
for
metabonomic/metabolomic studies. J Sep Sci 2010;
33
:
716 e 27.
34 Cubbon S, Bradbury T, Wilson J, et al. Hydrophilic
interaction chromatography for mass spectrometric
metabonomic studies of urine. Anal Chem 2007;
:7278 e 83.
22. Gika HG, Theodoridis G, Extance J, et al. High
temperature-ultra performance liquid chromatography-
mass spectrometry for the metabonomic analysis of
Zucker rat urine. J Chromatogr B 2008;
78
79
:
8911 e 8.
35. Kim K, Aronov P, Zakharkin SO, et al. Urine metab-
olomics analysis for kidney cancer detection and
biomarker discovery. Molecular & Cellular Proteomics
2009;
:279 e 87.
23. Rainville PD, Stumpf CL, Shockcor JP, et al. Novel
application of reversed-phase UPLC-oa TOF-MS for
lipid analysis in complex biological mixtures: a new
tool for lipidomics. J Proteome Res 2007;
871
:558 e 70.
36. Spagou K, Wilson ID, Masson P, et al. HILIC-UPLC-MS
for exploratory urinary metabolic pro
8
:552 e 8.
24. Castro-Perez JM, Kamphorst J, DeGroot J, et al.
Comprehensive LC-MS E lipidomic analysis using
a shotgun approach and its application to biomarker
detection and identi
6
ling in toxico-
:382 e 90.
37. Cai X, Dong J, Zou L, et al. Metabonomic study of lung
cancer and the effects of radiotherapy on lung cancer
patients: analysis of highly polar metabolites by ultra-
performance HILIC coupled with Q-TOF MS. Chroma-
tographia 2011;
logical studies. Anal Chem 2011;
83
cation in osteoarthritis patients.
:2377 e 89.
25. Bird SS, Marur VR, Sniatynski MJ, et al. Lipidomics
pro
J Proteome Res 2010;
9
ling by high-resolution LC-MS and high energy
collisional dissociation fragmentation: Focus on char-
acterisation of mitochondrial cardiolipins and mono-
lysocardiolipins. Anal Chem 2011;
:391 e 8.
38. Fauland F, Kofeler H, Trotzmuller M, et al. A compre-
hensive method for lipid pro
74
ling by liquid chroma-
tography-ion cyclotron resonance mass spectrometry.
J Lipid Res 2011;
:940 e 9.
26. Fauland A, Kofeler H, Trotzmuller M, et al. A
comprehensive method for lipid pro
83
:2314 e 22.
39. Yang Q, Shi X, Wang Y, Wang W, et al. Urinary
metabonomic study of lung cancer by a fully automatic
hyphenated hydrophilic interaction/RPLC-MS system.
J Sep Sci 2010;
52
ling by liquid
chromatography-ion cyclotron resonance mass spec-
trometry. J Lipid Res 2011;
:2314 e 22.
27. Michopoulos F, Lai L, Gika H, et al. UPLC-MS-based
analysis of human plasma for metabonomics using
solvent precipitation or solid phase extraction. J Pro-
teome Res 2009;
11
:1495 e 503.
40. Lu W, Clasquin MF, Melamud E, et al. Metabolomic
analysis via reversed-phase ion-pairing liquid chroma-
tography coupled to a stand alone Orbitrap mass
spectrometer. Anal Chem 2010;
33
:2114 e 21.
28. Michopoulos F, Edge AM, Theodoridis G, et al.
Application of turbulent
8
:3212 e 21.
41. Kiefer P, Delmotte N, Vorholt JA. Nanoscale ion-pair
reversed-phase HPLC-MS for sensitive metabolome
analysis. Anal Chem 2010;
82
ow chromatography to the
metabonomics analysis of human plasma: comparison
with protein precipitation. J Sep Sci 2010;
:1472 e 9.
29. Michopoulos F, Theodoridis G, Smith CJ, et al. Metab-
olite pro
33
:850 e 5.
42. Coulier L, Bas R, Jespersen S, et al. Simultaneous
quantitative analysis of metabolites using ion-pair
liquid chromatography-electrospray ionisation mass
spectrometry. Anal Chem 2006;
83
uids spots for metabo-
nomics studies using UPLC combined with oaToF-MS.
J Proteome Res 2010;
les from dried bio
:3328 e 34.
30. Michopoulos F, Theodoridis G, Smith CJ. Metabolite
pro
9
:6573 e 82.
43. Matyska MT, Pesek JJ, Duley J, et al. Aqueous normal
phase retention of nucleotides on silica hydride-based
78
les from dried blood spots for metabonomic
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