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Eucalyptol Protects Lungs against Bacterial Invasion through Attenuating Ciliated Cell Damage and Suppressing MUC5AC Expression

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Journal of Cellular Physiology

Published online on

Abstract

--- - |2+ Abstract This study was conducted to investigate whether Eucalyptol plays a role in influencing bacterial growth in cigarette smoke exposed lungs. Rats were exposed to air (control) and cigarette smoke (smoking) in presence and absence of Eucalyptol (260 mg/day). Morphological analysis of lung structures and status of airway mucous production were observed under a microscope. Pathological changes of ciliated columnar epithelium in airways were examined using transmission electron microscopy. MUC5AC protein and mRNA expression in bronchoalveolar lavage fluid (BALF) and lungs were determined. Application of Eucalyptol reduced pulmonary bullae formation and airway mucus overproduction in the smoke exposed lungs. Treatment with Eucalyptol attenuated ciliated cell damage in cigarette smoke exposed lungs. Bacterial colonies of lungs were obviously lower in the Eucalyptol treated rats than that in the smoking rats (P < 0.01). Treatment with Eucalyptol reduced the counts of bacterial colonization residing in the challenged lungs (P < 0.01). Application of Eucalyptol not only decreased MUC5AC protein expression in BALF and tobacco‐exposed lungs but also suppressed its mRNA expression in the lungs (all P < 0.05). Intervention of Eucalyptol benefits elimination of bacterial organisms from tobacco exposed lungs through attenuating ciliated cell damage and suppressing MUC5AC expression in the lungs. This article is protected by copyright. All rights reserved - 'Journal of Cellular Physiology, Volume 0, Issue ja, -Not available-. '