Literature DB >> 18415804

Evaluation of H2O2 and pH in exhaled breath condensate samples: methodical and physiological aspects.

Henri Knobloch1, Gunther Becher, Manfred Decker, Petra Reinhold.   

Abstract

This veterinary study is aimed at further standardization of H(2)O(2) and pH measurements in exhaled breath condensate (EBC). Data obtained in the study provide valuable information for many mammalian species including humans, and may help to avoid general pitfalls in interpretation of EBC data. EBC was sampled via the 'ECoScreen' in healthy calves (body weight 63-98 kg). Serum samples and condensates of ambient (indoor) air were collected in parallel. In the study on H(2)O(2), concentrations of H(2)O(2) in EBC, blood and ambient air were determined with the biosensor system 'ECoCheck'. In EBC, the concentration of H(2)O(2) was found to be dependent on food intake and increased significantly in the course of the day. Physiologically, lowest H(2)O(2) concentrations at 06:00 varied within the range 138-624 nmol l(-1) EBC or 0.10-0.94 nmol per 100 l exhaled breath and individual concentrations were significantly different indicating a remarkable intersubject variability. Highly reproducible results were seen within each subject (three different days within 4 weeks). No correlation existed between H(2)O(2) concentrations in EBC and blood, and EBC-H(2)O(2) was not influenced by variables of spontaneous breathing. Further results confirmed that standardization of H(2)O(2) measurements in EBC requires (1) the re-calculation of the concentration exhaled per 100 l exhaled breath (because the analyzed concentration in the liquid condensate underlies multiple methodological sources of variability given by the collection process), and (2) subtracting the concentration of inspired indoor H(2)O(2). In the study on pH use of the ISFET electrode (Sentron, the Netherlands) and a blood gas analyzer ABL 550 (Radiometer, Denmark) led to comparable results for EBC-pH (r=0.89, R(2)=79.3%, p<or=0.001). Physiological pH data in non-degassed EBC samples varied between 5.3 and 6.5, and were not significantly different between subjects, but were significantly higher in the evening compared with the morning. EBC-pH was not dependent on variables of spontaneous breathing pattern or ambient conditions, and no significant correlation was found between serum and EBC for pH.

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Year:  2008        PMID: 18415804     DOI: 10.1080/13547500701831440

Source DB:  PubMed          Journal:  Biomarkers        ISSN: 1354-750X            Impact factor:   2.658


  5 in total

1.  Hydrogen peroxide release and acid-base status in exhaled breath condensate at rest and after maximal exercise in young, healthy subjects.

Authors:  E Marek; P Platen; J Volke; K Mückenhoff; W Marek
Journal:  Eur J Med Res       Date:  2009-12-07       Impact factor: 2.175

2.  Exhaled breath condensate in intubated neonates--a window into the lung's glutathione status.

Authors:  Maria I Rosso; Susan Roark; Esther Taylor; XiaoDu Ping; Janine M Ward; Katherine Roche; Courtney McCracken; Lou Ann S Brown; Theresa W Gauthier
Journal:  Respir Res       Date:  2014-01-07

3.  Hydrogen peroxide in exhaled air: a source of error, a paradox and its resolution.

Authors:  Stefan Peters; Angelika Kronseder; Stefan Karrasch; Petra A Neff; Matz Haaks; Andreas R Koczulla; Petra Reinhold; Dennis Nowak; Rudolf A Jörres
Journal:  ERJ Open Res       Date:  2016-06-17

4.  In vitro characterization of PrismaLung+: a novel ECCO2R device.

Authors:  Ingeborg Hospach; Jacques Goldstein; Kai Harenski; John G Laffey; Dominique Pouchoulin; Manuela Raible; Stefanie Votteler; Markus Storr
Journal:  Intensive Care Med Exp       Date:  2020-05-13

5.  Bovine Respiratory Syncytial Virus (BRSV) Infection Detected in Exhaled Breath Condensate of Dairy Calves by Near-Infrared Aquaphotomics.

Authors:  Mariana Santos-Rivera; Amelia R Woolums; Merrilee Thoresen; Florencia Meyer; Carrie K Vance
Journal:  Molecules       Date:  2022-01-16       Impact factor: 4.411

  5 in total

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