Literature DB >> 17878543

Selected ion flow tube mass spectrometry for on-line trace gas analysis in biology and medicine.

P Spanĕl1, D Smith.   

Abstract

Selected ion flow tube mass spectrometry, (SIFT-MS), is a technique for simultaneous real-time quantification of several trace gases in air and exhaled breath. It relies on chemical ionization of the trace gas molecules in air/breath samples introduced into helium carrier gas, using H(3)O(+), NO(+) and O(2)(+) reagent (precursor ions). Reactions between the precursor ions and the trace gas molecules proceed for an accurately defined time, the precursor and product ions being detected and counted by a downstream mass spectrometer. Absolute concentrations of trace gases in single breath exhalation can be determined by SIFT-MS down to parts-per-billion (ppb) levels, obviating sample collection into bags or onto traps. Calibration using chemical standards is not required, as the concentrations are calculated using the known reaction rate constants and measured flow rates and pressures. SIFT-MS has been used for many pilot investigations in several areas of research, especially as a non-invasive breath analysis tool to investigate physiological processes in humans and animals, for clinical diagnosis and for therapeutic monitoring. Examples of the results obtained from several such studies are outlined to demonstrate the potential of SIFT-MS for trace gas analysis of air, exhaled breath and the headspace above liquids.

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Year:  2007        PMID: 17878543     DOI: 10.1255/ejms.843

Source DB:  PubMed          Journal:  Eur J Mass Spectrom (Chichester)        ISSN: 1469-0667            Impact factor:   1.067


  5 in total

1.  Breath analysis in disease diagnosis: methodological considerations and applications.

Authors:  Célia Lourenço; Claire Turner
Journal:  Metabolites       Date:  2014-06-20

2.  Assessment of a Noninvasive Exhaled Breath Test for the Diagnosis of Oesophagogastric Cancer.

Authors:  Sheraz R Markar; Tom Wiggins; Stefan Antonowicz; Sung-Tong Chin; Andrea Romano; Konstantin Nikolic; Benjamin Evans; David Cunningham; Muntzer Mughal; Jesper Lagergren; George B Hanna
Journal:  JAMA Oncol       Date:  2018-07-01       Impact factor: 31.777

3.  Sub-parts per billion detection of trace volatile chemicals in human breath using selected ion flow tube mass spectrometry.

Authors:  Brian M Ross
Journal:  BMC Res Notes       Date:  2008-07-10

Review 4.  Glucose prediction by analysis of exhaled metabolites - a systematic review.

Authors:  Jan Hendrik Leopold; Roosmarijn T M van Hooijdonk; Peter J Sterk; Ameen Abu-Hanna; Marcus J Schultz; Lieuwe D J Bos
Journal:  BMC Anesthesiol       Date:  2014-06-17       Impact factor: 2.217

5.  Exploring Volatile Organic Compounds in Breath for High-Accuracy Prediction of Lung Cancer.

Authors:  Ping-Hsien Tsou; Zong-Lin Lin; Yu-Chiang Pan; Hui-Chen Yang; Chien-Jen Chang; Sheng-Kai Liang; Yueh-Feng Wen; Chia-Hao Chang; Lih-Yu Chang; Kai-Lun Yu; Chia-Jung Liu; Li-Ta Keng; Meng-Rui Lee; Jen-Chung Ko; Guan-Hua Huang; Yaw-Kuen Li
Journal:  Cancers (Basel)       Date:  2021-03-21       Impact factor: 6.639

  5 in total

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