Literature DB >> 24169090

Dietary antioxidants prevent alcohol-induced ciliary dysfunction.

Samantha M Simet1, Jacqueline A Pavlik, Joseph H Sisson.   

Abstract

Previously we have shown that chronic alcohol intake causes alcohol-induced ciliary dysfunction (AICD), leading to non-responsive airway cilia. AICD likely occurs through the downregulation of nitric oxide (NO) and cyclic nucleotide-dependent kinases, protein kinase G (PKG) and protein kinase A (PKA). Studies by others have shown that dietary supplementation with the antioxidants N-acetylcysteine (NAC) and procysteine prevent other alcohol-induced lung complications. This led us to hypothesize that dietary supplementation with NAC or procysteine prevents AICD. To test this hypothesis, C57BL/6 mice drank an alcohol/water solution (20% w/v) ad libitum for 6 weeks and were concurrently fed dietary supplements of either NAC or procysteine. Ciliary beat frequency (CBF) was measured in mice tracheas, and PKG/PKA responsiveness to β-agonists and NOx levels were measured from bronchoalveolar lavage (BAL) fluid. Long-term alcohol drinking reduced CBF, PKG and PKA responsiveness to β-agonists, and lung NOx levels in BAL fluid. In contrast, alcohol-drinking mice fed NAC or procysteine sustained ciliary function and PKG and PKA responsiveness to β-agonists. However, BAL NO levels remained low despite antioxidant supplementation. We also determined that removal of alcohol from the drinking water for as little as 1 week restored ciliary function, but not PKG and PKA responsiveness to β-agonists. We conclude that dietary supplementation with NAC or procysteine protects against AICD. In addition, alcohol removal for 1 week restores cilia function independent of PKG and PKA activity. Our findings provide a rationale for the use of antioxidants to prevent damage to airway mucociliary functions in chronic alcohol-drinking individuals.
Copyright © 2013 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Alcohol; Ciliary beat frequency; Ciliary dysfunction; N-acetylcysteine; Nitric oxide; PKA; PKG; Procysteine

Mesh:

Substances:

Year:  2013        PMID: 24169090      PMCID: PMC3850762          DOI: 10.1016/j.alcohol.2013.09.004

Source DB:  PubMed          Journal:  Alcohol        ISSN: 0741-8329            Impact factor:   2.405


  32 in total

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4.  N-acetylcysteine inhibits in vivo nitric oxide production by inducible nitric oxide synthase.

Authors:  S Bergamini; C Rota; R Canali; M Staffieri; F Daneri; A Bini; F Giovannini; A Tomasi; A Iannone
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5.  The effects of chronic alcohol abuse on pulmonary glutathione homeostasis.

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Authors:  T A Wyatt; J H Sisson
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8.  Mitochondrial glutathione replacement restores surfactant synthesis and secretion in alveolar epithelial cells of ethanol-fed rats.

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Authors:  Yan Liang; Samantha M Yeligar; Lou Ann S Brown
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2.  Exhaled Nitric Oxide Levels Among Adults With Excessive Alcohol Consumption.

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Review 4.  Alcohol and lung injury and immunity.

Authors:  Samantha M Yeligar; Michael M Chen; Elizabeth J Kovacs; Joseph H Sisson; Ellen L Burnham; Lou Ann S Brown
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5.  Inhibition of protein phosphatase 1 reverses alcohol-induced ciliary dysfunction.

Authors:  Michael E Price; Jacqueline A Pavlik; Joseph H Sisson; Todd A Wyatt
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6.  Loss of cAMP-dependent stimulation of isolated cilia motility by alcohol exposure is oxidant-dependent.

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Journal:  Alcohol       Date:  2018-10-03       Impact factor: 2.405

7.  Alcohol Decreases Organic Dust-Stimulated Airway Epithelial TNF-Alpha Through a Nitric Oxide and Protein Kinase-Mediated Inhibition of TACE.

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Review 9.  Alcohol's Effects on Lung Health and Immunity.

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