Asthma is a complex, heterogeneous disorder with similar presenting symptoms but with varying underlying pathologies. Exhaled breath condensate (EBC) is a relatively unexplored matrix which reflects the signatures of respiratory epithelium, but is difficult to normalize for dilution. Here we explored whether internally normalized global NMR spectrum patterns, combined with machine learning, could be useful for diagnostics or endotype discovery. Nuclear magnetic resonance (NMR) spectroscopy of EBC was performed in 89 asthmatic subjects from a prospective cohort and 20 healthy controls. A random forest classifier was built to differentiate between asthmatics and healthy controls. Clustering of the spectra was done using k-means to identify po...
Breathomics, the multidimensional molecular analysis of exhaled breath, includes analysis of exhaled...
Exhaled breath condensate (EBC) is a noninvasive method for the study of airway lining fluid. Nuclea...
NMR spectroscopy-based metabolomics of exhaled breath condensate in inflammatory respiratory disease
Abstract Background Asthma is a complex, heterogeneous disorder with similar presenting symptoms but...
Exhaled breath condensate (EBC) holds promise as a noninvasive method of collecting airway-lining fl...
Exhaled breath condensate (EBC) collection is a noninvasive method to investigate lung diseases. EB...
Exhaled breath condensate (EBC) collection is a noninvasive method to investigate lung diseases. EBC...
RATIONALE: Metabolomic analysis provides biochemical profiles of low-molecular-weight endogenous met...
The discrimination of healthy and asthmatic cases can be solved using linear- and partial least squa...
Respiratory diseases present a very high prevalence in the general population, with an increase in m...
Nuclear magnetic resonance (NMR)-based metabolomics separates exhaled breath condensate (EBC) profil...
The metabolomic analysis of exhaled breath condensate (EBC) may provide insights on both the patholo...
The lack of standardized procedures for exhaled breath condensate (EBC), a noninvasive technique for...
Nuclear magnetic resonance (NMR)-based metabolomics separates exhaled breath condensate (EBC) profil...
Breathomics, the multidimensional molecular analysis of exhaled breath, includes analysis of exhaled...
Breathomics, the multidimensional molecular analysis of exhaled breath, includes analysis of exhaled...
Exhaled breath condensate (EBC) is a noninvasive method for the study of airway lining fluid. Nuclea...
NMR spectroscopy-based metabolomics of exhaled breath condensate in inflammatory respiratory disease
Abstract Background Asthma is a complex, heterogeneous disorder with similar presenting symptoms but...
Exhaled breath condensate (EBC) holds promise as a noninvasive method of collecting airway-lining fl...
Exhaled breath condensate (EBC) collection is a noninvasive method to investigate lung diseases. EB...
Exhaled breath condensate (EBC) collection is a noninvasive method to investigate lung diseases. EBC...
RATIONALE: Metabolomic analysis provides biochemical profiles of low-molecular-weight endogenous met...
The discrimination of healthy and asthmatic cases can be solved using linear- and partial least squa...
Respiratory diseases present a very high prevalence in the general population, with an increase in m...
Nuclear magnetic resonance (NMR)-based metabolomics separates exhaled breath condensate (EBC) profil...
The metabolomic analysis of exhaled breath condensate (EBC) may provide insights on both the patholo...
The lack of standardized procedures for exhaled breath condensate (EBC), a noninvasive technique for...
Nuclear magnetic resonance (NMR)-based metabolomics separates exhaled breath condensate (EBC) profil...
Breathomics, the multidimensional molecular analysis of exhaled breath, includes analysis of exhaled...
Breathomics, the multidimensional molecular analysis of exhaled breath, includes analysis of exhaled...
Exhaled breath condensate (EBC) is a noninvasive method for the study of airway lining fluid. Nuclea...
NMR spectroscopy-based metabolomics of exhaled breath condensate in inflammatory respiratory disease