Molecules (Aug 2020)

Effects of <i>Thymus vulgaris</i> L., <i>Cinnamomum verum</i> J.Presl and <i>Cymbopogon nardus</i> (L.) Rendle Essential Oils in the Endotoxin-induced Acute Airway Inflammation Mouse Model

  • Eszter Csikós,
  • Kata Csekő,
  • Amir Reza Ashraf,
  • Ágnes Kemény,
  • László Kereskai,
  • Béla Kocsis,
  • Andrea Böszörményi,
  • Zsuzsanna Helyes,
  • Györgyi Horváth

DOI
https://doi.org/10.3390/molecules25153553
Journal volume & issue
Vol. 25, no. 15
p. 3553

Abstract

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Thyme (TO), cinnamon (CO), and Ceylon type lemongrass (LO) essential oils (EOs) are commonly used for inhalation. However, their effects and mechanisms on inflammatory processes are not well-documented, and the number of in vivo data that would be important to determine their potential benefits or risks is low. Therefore, we analyzed the chemical composition and investigated the activity of TO, CO, and LO on airway functions and inflammatory parameters in an acute pneumonitis mouse model. The components of commercially available EOs were measured by gas chromatography–mass spectrometry. Airway inflammation was induced by intratracheal endotoxin administration in mice. EOs were inhaled during the experiments. Airway function and hyperresponsiveness were determined by unrestrained whole-body plethysmography on conscious animals. Myeloperoxidase (MPO) activity was measured by spectrophotometry from lung tissue homogenates, from which semiquantitative histopathological scores were assessed. The main components of TO, CO, and LO were thymol, cinnamaldehyde, and citronellal, respectively. We provide here the first evidence that TO and CO reduce inflammatory airway hyperresponsiveness and certain cellular inflammatory parameters, so they can potentially be considered as adjuvant treatments in respiratory inflammatory conditions. In contrast, Ceylon type LO inhalation might have an irritant effect (e.g., increased airway hyperresponsiveness and MPO activity) on the inflamed airways, and therefore should be avoided.

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