Cross-platform mass spectrometry annotation in breathomics of oesophageal-gastric cancer
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[1] B. Buszewski,et al. Analytical and unconventional methods of cancer detection using odor , 2012 .
[2] B. Ross,et al. Detection of acetone and isoprene in human breath using a combination of thermal desorption and selected ion flow tube mass spectrometry , 2009 .
[3] Mingxiao Li,et al. Preconcentration and analysis of trace volatile carbonyl compounds. , 2012, Analytical chemistry.
[4] David Smith,et al. Mass Spectrometric Analysis of Exhaled Breath for the Identification of Volatile Organic Compound Biomarkers in Esophageal and Gastric Adenocarcinoma , 2015, Annals of surgery.
[5] O. Fiehn,et al. FiehnLib: mass spectral and retention index libraries for metabolomics based on quadrupole and time-of-flight gas chromatography/mass spectrometry. , 2009, Analytical chemistry.
[6] I. Kurland,et al. Isotopic Ratio Outlier Analysis of the S. cerevisiae Metabolome Using Accurate Mass Gas Chromatography/Time-of-Flight Mass Spectrometry: A New Method for Discovery. , 2016, Analytical chemistry.
[7] P. Španěl,et al. SIFT studies of the reactions of H3O+, NO+ and O2+ with a series of aldehydes and ketones , 1997 .
[8] David Smith,et al. Selected ion flow tube mass spectrometry (SIFT-MS) for on-line trace gas analysis. , 2005, Mass spectrometry reviews.
[9] Peter J Oefner,et al. Continuous water infusion enhances atmospheric pressure chemical ionization of methyl chloroformate derivatives in gas chromatography coupled to time-of-flight mass spectrometry-based metabolomics. , 2014, Analytical chemistry.
[10] P. Oefner,et al. Performance evaluation of gas chromatography-atmospheric pressure chemical ionization-time-of-flight mass spectrometry for metabolic fingerprinting and profiling. , 2011, Analytical chemistry.
[11] Yang Zhang,et al. Blood volatile compounds as biomarkers for colorectal cancer , 2014, Cancer biology & therapy.
[12] G. Hanna,et al. Optimization of sampling parameters for standardized exhaled breath sampling. , 2017, Journal of breath research.
[13] Magdalena Ligor,et al. Determination of volatile organic compounds in exhaled breath of patients with lung cancer using solid phase microextraction and gas chromatography mass spectrometry , 2009, Clinical chemistry and laboratory medicine.
[14] B. Balbi,et al. Comparison between exhaled and sputum oxidative stress biomarkers in chronic airway inflammation , 2004, European Respiratory Journal.
[15] G. Hanna,et al. Optimisation of sampling parameters for standardised exhaled breath sampling , 2017, Journal of breath research.
[16] Antonio Ayala,et al. Lipid Peroxidation: Production, Metabolism, and Signaling Mechanisms of Malondialdehyde and 4-Hydroxy-2-Nonenal , 2014, Oxidative medicine and cellular longevity.
[17] K. Albert,et al. Online coupling of gas chromatography to nuclear magnetic resonance spectroscopy: method for the analysis of volatile stereoisomers. , 2008, Analytical chemistry.
[18] Oliver Fiehn,et al. Seven Golden Rules for heuristic filtering of molecular formulas obtained by accurate mass spectrometry , 2007, BMC Bioinformatics.
[19] R. Goodacre,et al. Exhaled Volatile Organic Compounds of Infection: A Systematic Review. , 2017, ACS infectious diseases.
[20] C. L. Paul Thomas,et al. How long may a breath sample be stored for at −80 °C? A study of the stability of volatile organic compounds trapped onto a mixed Tenax:Carbograph trap adsorbent bed from exhaled breath , 2016, Journal of breath research.
[21] Massimo Corradi,et al. Determination of aldehydes in exhaled breath of patients with lung cancer by means of on-fiber-derivatisation SPME-GC/MS. , 2010, Journal of chromatography. B, Analytical technologies in the biomedical and life sciences.
[22] Tianshu Wang,et al. A selected ion flow tube study of the reactions of H3O+, NO+ and O2+• with some phenols, phenyl alcohols and cyclic carbonyl compounds in support of SIFT-MS and PTR-MS , 2004 .
[23] P. Španěl,et al. SIFT studies of the reactions of H3O+, NO+ and O+2 with a series of volatile carboxylic acids and esters , 1998 .
[24] D. Hunt,et al. Argon-water mixtures as reagents for chemical ionization mass spectrometry , 1972 .
[25] I. Wilson,et al. Comparison of metabolomic profiles obtained using chemical ionization and electron ionization MS in exhaled breath. , 2011, Bioanalysis.
[26] B. Munson. CIMS, Chemistry in Mass Spectrometry , 2015 .
[27] C. Mathers,et al. GLOBOCAN 2012 v1.0, Cancer Incidence and Mortality Worldwide: IARC CancerBase No. 11 [Internet]. Lyon, France: International Agency for Research on Cancer , 2013 .
[28] J. Herbig,et al. On-line breath analysis with PTR-TOF , 2009, Journal of breath research.
[29] Tianshu Wang,et al. Analysis of ketones by selected ion flow tube mass spectrometry. , 2003, Rapid communications in mass spectrometry : RCM.
[30] F. Sánchez-Jiménez,et al. Role of reactive oxygen species in apoptosis: implications for cancer therapy. , 2000, The international journal of biochemistry & cell biology.
[31] P. Španěl,et al. SIFT studies of the reactions of H3O+, NO+ and O2+ with a series of alcohols , 1997 .
[32] Hossam Haick,et al. Detection of cancer through exhaled breath: a systematic review , 2015, Oncotarget.
[33] David Smith,et al. A selected ion flow tube study of the reactions of H3O+, NO+, and O2+ with saturated and unsaturated aldehydes and subsequent hydration of the product ions , 2002 .
[34] Hossam Haick,et al. Assessment, origin, and implementation of breath volatile cancer markers. , 2014, Chemical Society reviews.
[35] Peter J Sterk,et al. Exhaled Molecular Fingerprinting in Diagnosis and Monitoring: Validating Volatile Promises. , 2015, Trends in molecular medicine.
[36] Dhiren P. Shah,et al. ON OXIDATIVE STRESS AND DIABETIC COMPLICATIONS , 2013 .
[37] B. Ross,et al. The combined use of thermal desorption and selected ion flow tube mass spectrometry for the quantification of xylene and toluene in air. , 2007, Rapid communications in mass spectrometry : RCM.
[38] G. Hanna,et al. Quantification of phenol in urine headspace using SIFT-MS and investigation of variability with respect to urinary concentration , 2015 .
[39] VeronikaRuzsányi,et al. Breath acetone as a potential marker in clinical practice * , 2017 .
[40] G. Hanna,et al. Research protocol for a diagnostic study of non-invasive exhaled breath analysis for the prediction of oesophago-gastric cancer , 2016, BMJ Open.
[41] Hossam Haick,et al. Detection of precancerous gastric lesions and gastric cancer through exhaled breath , 2015, Gut.
[42] M. Fiegl,et al. Noninvasive detection of lung cancer by analysis of exhaled breath , 2009, BMC Cancer.
[43] Bettina Zelger,et al. Comparative analyses of volatile organic compounds (VOCs) from patients, tumors and transformed cell lines for the validation of lung cancer-derived breath markers , 2014, Journal of breath research.
[44] G. Hanna,et al. Selected ion flow tube mass spectrometry analysis of exhaled breath for volatile organic compound profiling of esophago-gastric cancer. , 2013, Analytical chemistry.
[45] K. Bein,et al. Acrolein - a pulmonary hazard. , 2011, Molecular nutrition & food research.