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Assessment of breath volatile organic compounds in acute cardiorespiratory breathlessness: a protocol describing a prospective real-world observational study

INTRODUCTION: Patients presenting with acute undifferentiated breathlessness are commonly encountered in admissions units across the UK. Existing blood biomarkers have clinical utility in distinguishing patients with single organ pathologies but have poor discriminatory power in multifactorial prese...

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Autores principales: Ibrahim, Wadah, Wilde, Michael, Cordell, Rebecca, Salman, Dahlia, Ruszkiewicz, Dorota, Bryant, Luke, Richardson, Matthew, Free, Robert C, Zhao, Bo, Yousuf, Ahmed, White, Christobelle, Russell, Richard, Jones, Sheila, Patel, Bharti, Awal, Asia, Phillips, Rachael, Fowkes, Graham, McNally, Teresa, Foxon, Clare, Bhatt, Hetan, Peltrini, Rosa, Singapuri, Amisha, Hargadon, Beverley, Suzuki, Toru, Ng, Leong L, Gaillard, Erol, Beardsmore, Caroline, Ryanna, Kimuli, Pandya, Hitesh, Coates, Tim, Monks, Paul S, Greening, Neil, Brightling, Christopher E, Thomas, Paul, Siddiqui, Salman
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BMJ Publishing Group 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6429860/
https://www.ncbi.nlm.nih.gov/pubmed/30852546
http://dx.doi.org/10.1136/bmjopen-2018-025486
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author Ibrahim, Wadah
Wilde, Michael
Cordell, Rebecca
Salman, Dahlia
Ruszkiewicz, Dorota
Bryant, Luke
Richardson, Matthew
Free, Robert C
Zhao, Bo
Yousuf, Ahmed
White, Christobelle
Russell, Richard
Jones, Sheila
Patel, Bharti
Awal, Asia
Phillips, Rachael
Fowkes, Graham
McNally, Teresa
Foxon, Clare
Bhatt, Hetan
Peltrini, Rosa
Singapuri, Amisha
Hargadon, Beverley
Suzuki, Toru
Ng, Leong L
Gaillard, Erol
Beardsmore, Caroline
Ryanna, Kimuli
Pandya, Hitesh
Coates, Tim
Monks, Paul S
Greening, Neil
Brightling, Christopher E
Thomas, Paul
Siddiqui, Salman
author_facet Ibrahim, Wadah
Wilde, Michael
Cordell, Rebecca
Salman, Dahlia
Ruszkiewicz, Dorota
Bryant, Luke
Richardson, Matthew
Free, Robert C
Zhao, Bo
Yousuf, Ahmed
White, Christobelle
Russell, Richard
Jones, Sheila
Patel, Bharti
Awal, Asia
Phillips, Rachael
Fowkes, Graham
McNally, Teresa
Foxon, Clare
Bhatt, Hetan
Peltrini, Rosa
Singapuri, Amisha
Hargadon, Beverley
Suzuki, Toru
Ng, Leong L
Gaillard, Erol
Beardsmore, Caroline
Ryanna, Kimuli
Pandya, Hitesh
Coates, Tim
Monks, Paul S
Greening, Neil
Brightling, Christopher E
Thomas, Paul
Siddiqui, Salman
author_sort Ibrahim, Wadah
collection PubMed
description INTRODUCTION: Patients presenting with acute undifferentiated breathlessness are commonly encountered in admissions units across the UK. Existing blood biomarkers have clinical utility in distinguishing patients with single organ pathologies but have poor discriminatory power in multifactorial presentations. Evaluation of volatile organic compounds (VOCs) in exhaled breath offers the potential to develop biomarkers of disease states that underpin acute cardiorespiratory breathlessness, owing to their proximity to the cardiorespiratory system. To date, there has been no systematic evaluation of VOC in acute cardiorespiratory breathlessness. The proposed study will seek to use both offline and online VOC technologies to evaluate the predictive value of VOC in identifying common conditions that present with acute cardiorespiratory breathlessness. METHODS AND ANALYSIS: A prospective real-world observational study carried out across three acute admissions units within Leicestershire. Participants with self-reported acute breathlessness, with a confirmed primary diagnosis of either acute heart failure, community-acquired pneumonia and acute exacerbation of asthma or chronic obstructive pulmonary disease will be recruited within 24 hours of admission. Additionally, school-age children admitted with severe asthma will be evaluated. All participants will undergo breath sampling on admission and on recovery following discharge. A range of online technologies including: proton transfer reaction mass spectrometry, gas chromatography ion mobility spectrometry, atmospheric pressure chemical ionisation-mass spectrometry and offline technologies including gas chromatography mass spectroscopy and comprehensive two-dimensional gas chromatography-mass spectrometry will be used for VOC discovery and replication. For offline technologies, a standardised CE-marked breath sampling device (ReCIVA) will be used. All recruited participants will be characterised using existing blood biomarkers including C reactive protein, brain-derived natriuretic peptide, troponin-I and blood eosinophil levels and further evaluated using a range of standardised questionnaires, lung function testing, sputum cell counts and other diagnostic tests pertinent to acute disease. ETHICS AND DISSEMINATION: The National Research Ethics Service Committee East Midlands has approved the study protocol (REC number: 16/LO/1747). Integrated Research Approval System (IRAS) 198921. Findings will be presented at academic conferences and published in peer-reviewed scientific journals. Dissemination will be facilitated via a partnership with the East Midlands Academic Health Sciences Network and via interaction with all UK-funded Medical Research Council and Engineering and Physical Sciences Research Council molecular pathology nodes. TRIAL REGISTRATION NUMBER: NCT03672994.
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spelling pubmed-64298602019-04-05 Assessment of breath volatile organic compounds in acute cardiorespiratory breathlessness: a protocol describing a prospective real-world observational study Ibrahim, Wadah Wilde, Michael Cordell, Rebecca Salman, Dahlia Ruszkiewicz, Dorota Bryant, Luke Richardson, Matthew Free, Robert C Zhao, Bo Yousuf, Ahmed White, Christobelle Russell, Richard Jones, Sheila Patel, Bharti Awal, Asia Phillips, Rachael Fowkes, Graham McNally, Teresa Foxon, Clare Bhatt, Hetan Peltrini, Rosa Singapuri, Amisha Hargadon, Beverley Suzuki, Toru Ng, Leong L Gaillard, Erol Beardsmore, Caroline Ryanna, Kimuli Pandya, Hitesh Coates, Tim Monks, Paul S Greening, Neil Brightling, Christopher E Thomas, Paul Siddiqui, Salman BMJ Open Respiratory Medicine INTRODUCTION: Patients presenting with acute undifferentiated breathlessness are commonly encountered in admissions units across the UK. Existing blood biomarkers have clinical utility in distinguishing patients with single organ pathologies but have poor discriminatory power in multifactorial presentations. Evaluation of volatile organic compounds (VOCs) in exhaled breath offers the potential to develop biomarkers of disease states that underpin acute cardiorespiratory breathlessness, owing to their proximity to the cardiorespiratory system. To date, there has been no systematic evaluation of VOC in acute cardiorespiratory breathlessness. The proposed study will seek to use both offline and online VOC technologies to evaluate the predictive value of VOC in identifying common conditions that present with acute cardiorespiratory breathlessness. METHODS AND ANALYSIS: A prospective real-world observational study carried out across three acute admissions units within Leicestershire. Participants with self-reported acute breathlessness, with a confirmed primary diagnosis of either acute heart failure, community-acquired pneumonia and acute exacerbation of asthma or chronic obstructive pulmonary disease will be recruited within 24 hours of admission. Additionally, school-age children admitted with severe asthma will be evaluated. All participants will undergo breath sampling on admission and on recovery following discharge. A range of online technologies including: proton transfer reaction mass spectrometry, gas chromatography ion mobility spectrometry, atmospheric pressure chemical ionisation-mass spectrometry and offline technologies including gas chromatography mass spectroscopy and comprehensive two-dimensional gas chromatography-mass spectrometry will be used for VOC discovery and replication. For offline technologies, a standardised CE-marked breath sampling device (ReCIVA) will be used. All recruited participants will be characterised using existing blood biomarkers including C reactive protein, brain-derived natriuretic peptide, troponin-I and blood eosinophil levels and further evaluated using a range of standardised questionnaires, lung function testing, sputum cell counts and other diagnostic tests pertinent to acute disease. ETHICS AND DISSEMINATION: The National Research Ethics Service Committee East Midlands has approved the study protocol (REC number: 16/LO/1747). Integrated Research Approval System (IRAS) 198921. Findings will be presented at academic conferences and published in peer-reviewed scientific journals. Dissemination will be facilitated via a partnership with the East Midlands Academic Health Sciences Network and via interaction with all UK-funded Medical Research Council and Engineering and Physical Sciences Research Council molecular pathology nodes. TRIAL REGISTRATION NUMBER: NCT03672994. BMJ Publishing Group 2019-03-08 /pmc/articles/PMC6429860/ /pubmed/30852546 http://dx.doi.org/10.1136/bmjopen-2018-025486 Text en © Author(s) (or their employer(s)) 2018. Re-use permitted under CC BY. Published by BMJ. This is an open access article distributed in accordance with the Creative Commons Attribution 4.0 Unported (CC BY 4.0) license, which permits others to copy, redistribute, remix, transform and build upon this work for any purpose, provided the original work is properly cited, a link to the licence is given, and indication of whether changes were made. See: https://creativecommons.org/licenses/by/4.0/.
spellingShingle Respiratory Medicine
Ibrahim, Wadah
Wilde, Michael
Cordell, Rebecca
Salman, Dahlia
Ruszkiewicz, Dorota
Bryant, Luke
Richardson, Matthew
Free, Robert C
Zhao, Bo
Yousuf, Ahmed
White, Christobelle
Russell, Richard
Jones, Sheila
Patel, Bharti
Awal, Asia
Phillips, Rachael
Fowkes, Graham
McNally, Teresa
Foxon, Clare
Bhatt, Hetan
Peltrini, Rosa
Singapuri, Amisha
Hargadon, Beverley
Suzuki, Toru
Ng, Leong L
Gaillard, Erol
Beardsmore, Caroline
Ryanna, Kimuli
Pandya, Hitesh
Coates, Tim
Monks, Paul S
Greening, Neil
Brightling, Christopher E
Thomas, Paul
Siddiqui, Salman
Assessment of breath volatile organic compounds in acute cardiorespiratory breathlessness: a protocol describing a prospective real-world observational study
title Assessment of breath volatile organic compounds in acute cardiorespiratory breathlessness: a protocol describing a prospective real-world observational study
title_full Assessment of breath volatile organic compounds in acute cardiorespiratory breathlessness: a protocol describing a prospective real-world observational study
title_fullStr Assessment of breath volatile organic compounds in acute cardiorespiratory breathlessness: a protocol describing a prospective real-world observational study
title_full_unstemmed Assessment of breath volatile organic compounds in acute cardiorespiratory breathlessness: a protocol describing a prospective real-world observational study
title_short Assessment of breath volatile organic compounds in acute cardiorespiratory breathlessness: a protocol describing a prospective real-world observational study
title_sort assessment of breath volatile organic compounds in acute cardiorespiratory breathlessness: a protocol describing a prospective real-world observational study
topic Respiratory Medicine
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6429860/
https://www.ncbi.nlm.nih.gov/pubmed/30852546
http://dx.doi.org/10.1136/bmjopen-2018-025486
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