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CHEMOMETRICS

Discrimination of Lung Cancer Related Volatile Organic Compounds with a Colorimetric Sensor Array

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Pages 2048-2059 | Received 03 Jan 2013, Accepted 18 Feb 2013, Published online: 26 Aug 2013

REFERENCES

  • Bajtarevic , A. , C. Ager , M. Pienz , M. Klieber , K. Schwarz , M. Ligor , et al. . 2009 . Noninvasive detection of lung cancer by analysis of exhaled breath . Bmc Cancer. 9 : 348 .
  • Belhumeur , P. N. , J. P. Hespanha , and D. J. Kriegman . 1996 . Eigenfaces vs. fisherfaces: recognition using class specific linear projection . Computer Vision – ECCV'96. 1064 : 43 – 58 .
  • Chen , X. , F. Xu , Y. Wang , Y. Pan , D. Lu , P. Wang , K. Ying , E. Chen , and W. Zhang . 2007 . A study of the volatile organic compounds exhaled by lung cancer cells in vitro for breath diagnosis . Cancer. 110 : 835 – 844 .
  • Cornu , J. N. , and G. Cancel-Tassin . 2011 . Olfactory detection of prostate cancer by dogs sniffing urine: a step forward in early diagnosis . Eur. Urol. 59 : 197 – 201 .
  • Dragonieri , S. , J. T. Annema , R. Schot , M. P. C. Vander Schee , A. Spanevello , P. Carratu , O. Resta , K. F. Rabe , and P. J. Sterk . 2009 . An electronic nose in the discrimination of patients with non-small cell lung cancer and COPD . Lung Cancer 64 : 166 – 170 .
  • Filipiak , W. , A. Sponring , T. Mikoviny , C. Ager , J. Schubert , W. Miekisch , A. Amann , and J. Troppmair . 2008 . Release of volatile organic compounds (VOCs) from the lung cancer cell line . Cancer. Cell. Int. 8 : 1 – 11 .
  • Hou , C. J. , J. Dong , G. Zhang , Y. Lei , M. Yang , Y. Zhang , Z. Liu , S. Zhang , and D. Huo . 2011. Colorimetric artificial tongue for protein identification. Biosens. Bioelectron. 26: 3981–3986.
  • Hou , C. J. , J. Li , D. Q. Huo , X. Luo , J. Dong , M. Yang , and X. Shi . 2012 . A portable embedded toxic gas detection device based on a cross-responsive sensor array . Sensor. Actuat. B-Chem. 161 : 244 – 250 .
  • Humphrey , L. L. , S. Teutsch , and M. Johnson . 2004 . Lung cancer screening with sputum cytologic examination, chest radiography, and computed tomography: an update for the U.S. Preventive Services Task Force . Ann. Intern. Med. 140 : 740 – 753 .
  • Jemal , A. , M. J. Thun , L. A. G. Ries , H. L. Howe , H. K. Weir , M. M. Center , et al. . 2008 . Featuring trends in lung cancer, tobacco use, and tobacco control . J. Natl. Cancer. I. 100 : 1672 – 1694 .
  • Kim , K. H , S. A. Jahan , and E. Kabir . 2012 . A review of breath analysis for diagnosis of human health . TRAC-Trend Anal Chem. 33 : 1 – 8 .
  • Kneepkens , C. M. F. , G. Lepage , and C. C. Roy . 1994 . The potential of the hydrocarbon breath test as a measure of lipid peroxidation . Free Radical Bio Med. 17 : 127 – 160 .
  • Machado , R. F. , D. Laskowski , O. Deffenderfer , T. Burch , S. Zheng , P. J. Mazzone , et al. 2005 . Detection of lung cancer by sensor array analyses of exhaled breath . Am. J. Resp. Crit. Care. 171 : 1286 – 1291 .
  • Marnett , L. J. 2000 . Oxyradicals and DNA damage . Carcinogenesis. 21 : 361 – 370 .
  • Mazzone , P. J. 2012 . Exhaled breath volatile organic compound biomarkers in lung cancer . J. Breath Res. 6 : 27106 .
  • Mazzone , P. J. , J. Hammel , R. Dweik , J. Na , C. Czich , D. Laskowski , and T. Mekhail . 2007 . Diagnosis of lung cancer by the analysis of exhaled breath with a colorimetric sensor array . Thorax. 62 : 565 – 568 .
  • Mazzone , P. J. , X. F. Wang , Y. Xu , T. Mekhail , M. C. Beukemann , J. Na , J. W. Kemling , K. S. Suslick , and M. Sasidhar . 2012 . Exhaled breath analysis with a colorimetric sensor array for the identification and characterization of lung cancer . J. Thorac Oncol. 7 : 137 – 142 .
  • Miekisch , W. , and J. K. Schubert . 2004 . Diagnostic potential of breath analysis—focus on volatile organic compounds . Clin. Chim. Acta. 347 : 25 – 39 .
  • Natale , D. C , A. Macagnano , E. Martinelli , R. Paolesse , G. D'Arcangelo , C. Roscioni , A. Finazzi-Agrò , and A. D'Amico . 2003 . Lung cancer identification by the analysis of breath by means of an array of non-selective gas sensors . Biosens. Bioelectron. 18 : 1209 – 1218 .
  • Peng , G. , U. Tisch , O. Adams , M. Hakim , N. Shehada , Y. Y. Broza , S. Billan , R. Abdah-Bortnyak , A. Kuten , and H. Haick . 2009 . Diagnosing lung cancer in exhaled breath using gold nanoparticles . Nat. nanotechnol. 4 : 669 – 673 .
  • Peng , G. , E. Trock , and H. Haick . 2008 . Detecting simulated patterns of lung cancer biomarkers by random network of single-walled carbon nanotubes coated with nonpolymeric organic materials . Nano. Lett. 8 : 3631 – 3635 .
  • Phillips , M. , N. Altorki , J. H. M. Austin , R. B. Cameron , R. N. Cataneo , J. Greenberg , R. Kloss , R. A. Maxfield , M. I. Munawar , and H. I. Pass . 2007 . Prediction of lung cancer using volatile biomarkers in breath . Cancer. Biomark. 3 : 95 – 109 .
  • Phillips , M. , K. Gleeson , J. M. B. Hughes , J. Greenberg , R. N. Cataneo , L. Baker , and W. P. McVay . 1999 . Volatile organic compounds in breath as markers of lung cancer: a cross-sectional study . Lancet. 353 : 1930 – 1933 .
  • Poli , D. , P. Carbognani , M. Corradi , M. Goldoni , O. Acampa , B. Balbi , L. Bianchi , M. Rusca , and A. Mutti . 2005 . Exhaled volatile organic compounds in patients with non-small cell lung cancer: cross sectional and nested short-term follow-up study . Resp. Res. 6 : 71 .
  • Rudnicka , J. , T. Kowalkowski , T. Ligor , and B. Buszewski . 2011 . Determination of volatile organic compounds as biomarkers of lung cancer by SPME-GC-TOF/MS and chemometrics . J. Chromatogr. B. 879 : 3360 – 3366 .
  • Sanchez , D. N. M. , E. Hernandez Garcia , J. E. Perez Pavon , and B. Moreno Cordero . 2012. Fast analytical methodology based on mass spectrometry for the determination of volatile biomarkers in saliva. Anal. Chem. 84: 379–385.
  • Schuller , H. M. 2002 . Mechanisms of smoking-related lung and pancreatic adenocarcinoma development . Nat. Rev. Cancer. 2 : 455 – 463 .
  • Silva , C. L. , M. Passos , and J. S. Camara . 2011 . Investigation of urinary volatile organic metabolites as potential cancer biomarkers by solid-phase microextraction in combination with gas chromatography-mass spectrometry . Brit. J. Cancer. 105 : 1894 – 1904 .
  • Song , G. , T. Qin , H. Liu , G. Xu , Y. Pan , F. Xiong , K. Gu , G. Sun , and Z. Chen . 2010 . Quantitative breath analysis of volatile organic compounds of lung cancer patients . Lung Cancer-J Iaslc. 67 : 227 – 231 .
  • Takagi , T. , and M. Sugeno . 1985 . Fuzzy identification of systems and its applications to modeling and control . Ieee T Syst Man Cy. 15 : 116 – 132 .
  • Wehinger , A. , A. Schmid , S. Mechtcheriakov , M. Ledochowski , C. Grabmer , G. A. Gastl , and A. Amann . 2007 . Lung cancer detection by proton transfer reaction mass-spectrometric analysis of human breath gas . Int. J. Mass. Spectrom. 265 : 49 – 59 .

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