Analysis of Volatile Organic Compounds in Exhaled Breath Following a COMEX-30 Treatment Table

Author:

de Jong Feiko J. M.12,Wingelaar Thijs T.12ORCID,Brinkman Paul3,van Ooij Pieter-Jan A. M.13ORCID,Maitland-van der Zee Anke H.3ORCID,Hollmann Markus W.2ORCID,van Hulst Rob A.2

Affiliation:

1. Royal Netherlands Navy Diving and Submarine Medical Centre, 1780 CA Den Helder, The Netherlands

2. Department of Anesthesiology, Amsterdam UMC, Location AMC, 1100 DD Amsterdam, The Netherlands

3. Department of Pulmonology, Amsterdam UMC, Location AMC, 1100 DD Amsterdam, The Netherlands

Abstract

The COMEX-30 hyperbaric treatment table is used to manage decompression sickness in divers but may result in pulmonary oxygen toxicity (POT). Volatile organic compounds (VOCs) in exhaled breath are early markers of hyperoxic stress that may be linked to POT. The present study assessed whether VOCs following COMEX-30 treatment are early markers of hyperoxic stress and/or POT in ten healthy, nonsmoking volunteers. Because more oxygen is inhaled during COMEX-30 treatment than with other treatment tables, this study hypothesized that VOCs exhaled following COMEX-30 treatment are indicators of POT. Breath samples were collected before and 0.5, 2, and 4 h after COMEX-30 treatment. All subjects were followed-up for signs of POT or other symptoms. Nine compounds were identified, with four (nonanal, decanal, ethyl acetate, and tridecane) increasing 33–500% in intensity from before to after COMEX-30 treatment. Seven subjects reported pulmonary symptoms, five reported out-of-proportion tiredness and transient ear fullness, and four had signs of mild dehydration. All VOCs identified following COMEX-30 treatment have been associated with inflammatory responses or pulmonary diseases, such as asthma or lung cancer. Because most subjects reported transient pulmonary symptoms reflecting early-stage POT, the identified VOCs are likely markers of POT, not just hyperbaric hyperoxic exposure.

Publisher

MDPI AG

Subject

Molecular Biology,Biochemistry,Endocrinology, Diabetes and Metabolism

Reference64 articles.

1. Brubakk, A., and Neuman, T. (2003). Bennett and Elliott’s Physiology and Medicine of Diving, Elsevier. [5th ed.].

2. Decompression Sickness and Arterial Gas Embolism;Mitchell;N. Engl. J. Med.,2022

3. Recurrence of Neurological Deficits in an F/A-18D Pilot Following Loss of Cabin Pressure at Altitude;Robinson;Aerosp. Med. Hum. Perform.,2016

4. Decompression sickness during construction of the Great Belt Tunnel, Denmark;Andersen;Undersea Hyperb. Med.,2002

5. Hyperbaric Treatment for Decompression Sickness: Current Recommendations;Moon;Undersea Hyperb. Med.,2019

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