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Breath analysis by two-dimensional gas chromatography with dual flame ionisation and mass spectrometric detection - Method optimisation and integration within a large-scale clinical study.


ABSTRACT: Precision medicine has spurred new innovations in molecular pathology leading to recent advances in the analysis of exhaled breath as a non-invasive diagnostic tool. Volatile organic compounds (VOCs) detected in exhaled breath have the potential to reveal a wealth of chemical and metabolomic information. This study describes the development of a method for the analysis of breath, based on automated thermal desorption (TD) combined with flow modulated comprehensive two-dimensional gas chromatography (GC×GC) with dual flame ionisation and quadrupole mass spectrometric detection (FID and qMS). The constrained optimisation and analytical protocol was designed to meet the practical demands of a large-scale multi-site clinical study, while maintaining analytical rigour to produce high fidelity data. The results demonstrate a comprehensive method optimisation for the collection and analysis of breath VOCs by GC×GC, integral to the standardisation and integration of breath analysis within large clinical studies.

SUBMITTER: Wilde MJ 

PROVIDER: S-EPMC6491496 | biostudies-literature | 2019 Jun

REPOSITORIES: biostudies-literature

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Breath analysis by two-dimensional gas chromatography with dual flame ionisation and mass spectrometric detection - Method optimisation and integration within a large-scale clinical study.

Wilde Michael J MJ   Cordell Rebecca L RL   Salman Dahlia D   Zhao Bo B   Ibrahim Wadah W   Bryant Luke L   Ruszkiewicz Dorota D   Singapuri Amisha A   Free Robert C RC   Gaillard Erol A EA   Beardsmore Caroline C   Thomas C L Paul CLP   Brightling Chris E CE   Siddiqui Salman S   Monks Paul S PS  

Journal of chromatography. A 20190205


Precision medicine has spurred new innovations in molecular pathology leading to recent advances in the analysis of exhaled breath as a non-invasive diagnostic tool. Volatile organic compounds (VOCs) detected in exhaled breath have the potential to reveal a wealth of chemical and metabolomic information. This study describes the development of a method for the analysis of breath, based on automated thermal desorption (TD) combined with flow modulated comprehensive two-dimensional gas chromatogra  ...[more]

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