Exhaled particle size and phospholipid composition of the respiratory tract lining fluid following moderate-intensity exercise in sub-zero conditions
Övrig text i vetenskaplig tidskrift, 2026

Exercise-induced bronchoconstriction (EIB) commonly develops after exercise in cold, dry environments, but the effects of acute exercise in the cold on airway physiology remain incompletely understood. Exhaled particle (PEx) analysis offers a novel, non-invasive approach to assess respiratory tract lining fluid (RTLF) composition and may provide mechanistic insights into airway responses before clinically detectable changes occur. This study investigated the PEx response to moderate-intensity exercise in sub-zero conditions among healthy atopic and non-atopic individuals. Eighteen participants (14 male, 29 ± 6 years) performed two moderate-intensity exercise trials (30 and 90 min duration) in a climate chamber at −15 °C. PEx samples were collected using the PExA® method, before and 30 min after exercise to assess particle mass and count across eight size bins (0.4–5 µm) and for subsequent lipidomic analysis. Exercise induced a significant increase in smaller PEx (0.4–0.7 μm; p < 0.01). Three lipid species were altered after 30 min exercise, and 11 after 90 min exercise. Phosphatidylethanolamine PE(16:1_18:0) was the only lipid that consistently increased across both exercise durations (30 min: p = 0.023; 90 min: p = 0.044; g = 0.97). Three specific lipid species showed differential exercise responses between atopic and non-atopic participants, including an oxidised phosphatidylcholine species PC(16:0_9:0;O) (p = 0.006, q = 0.59, g = 0.86). These results provide preliminary insight into airway surfactant responses to exercise in a cold climate and contribute to the growing understanding of how the PExA® method can be applied as a non-invasive tool for respiratory health assessment in an acute setting.

winter sports

exhaled particles

cold environment

exercise-induced bronchoconstriction

airway health

lipidomics

Författare

Helen Hanstock

Mittuniversitetet

Angelos Gavrielatos

Mittuniversitetet

Laboratoire de Bioénergétique Fondamentale et Appliquée (LBFA)

Iluta Ratkevica

South East Technological University

Mittuniversitetet

Per Jan-Wilhelm Larsson

Chalmers, Life sciences, Systembiologi

Anna-Carin Olin

Göteborgs universitet

Nikolai Stenfors

Umeå universitet

Journal of Breath Research

1752-7155 (ISSN) 1752-7163 (eISSN)

Vol. 20 3 031001

Ämneskategorier (SSIF 2025)

Lungmedicin och allergi

DOI

10.1088/1752-7163/ae7fb0

PubMed

42320488

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Senast uppdaterat

2026-07-07