Cytokines and Chemokines Are Detectable in Swivel-Derived Exhaled Breath Condensate (SEBC): A Pilot Study in Mechanically Ventilated Patients

Author:

van der Zee Philip1ORCID,van Walree Inez2,Fijen Jan-Willem2,van Houte Arend-Jan34,van Velzen-Blad Heleen3,Rijkers Ger35,Gommers Diederik1,Endeman Henrik12

Affiliation:

1. Department of Adult Intensive Care, Erasmus Medical Center, Doctor Molewaterplein 40, 3015 GD Rotterdam, Netherlands

2. Department of Adult Intensive Care, Diakonessenhuis, Bosboomstraat 1, 3582 KE Utrecht, Netherlands

3. Department of Medical Microbiology and Immunology, St. Antonius Ziekenhuis, Koekoekslaan 1, 3435 CM Nieuwegein, Netherlands

4. Department of Medical Microbiology and Clinical Chemistry, Diakonessenhuis, Bosboomstraat 1, 3582 KE Utrecht, Netherlands

5. Science Department, University College Roosevelt, Lange Noordstraat 1, 4331 CB Middelburg, Netherlands

Abstract

Introduction. Exhaled breath condensate (EBC) is a noninvasive method to collect samples from the respiratory tract. Usually, a thermoelectric cooling module is required to collect sufficient EBC volume for analyses. In here, we assessed the feasibility of cytokine and chemokine detection in EBC collected directly from the ventilator circuit without the use of a cooling module: swivel-derived exhaled breath condensate (SEBC). Methods. SEBC was prospectively collected from the swivel adapter and stored at -80°C. The objective of this study was to detect cytokines and chemokines in SEBC with a multiplex immunoassay. Secondary outcomes were to assess the correlation between cytokine and chemokine concentrations in SEBC and mechanical ventilation parameters, systemic inflammation parameters, and hemodynamic parameters. Results. Twenty-nine SEBC samples were obtained from 13 ICU patients. IL-1β, IL-4, IL-8, and IL-17 were detected in more than 90% of SEBC samples, and significant correlations between multiple cytokines and chemokines were found. Several significant correlations were found between cytokines and chemokines in SEBC and mechanical ventilation parameters and serum lactate concentrations. Conclusion. This pilot study showed that it is feasible to detect cytokines and chemokines in SEBC samples obtained without a cooling module. Despite small sample size, correlations were found between cytokines and chemokines in SEBC and mechanical ventilation parameters, as well as serum lactate concentrations. This simple SEBC collection method provides the opportunity to collect EBC samples in large prospective ICU cohorts.

Funder

Cornelis Visser Foundation

Publisher

Hindawi Limited

Subject

Biochemistry (medical),Clinical Biochemistry,Genetics,Molecular Biology,General Medicine

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