Literature DB >> 24582687

Acute chlorine gas exposure produces transient inflammation and a progressive alteration in surfactant composition with accompanying mechanical dysfunction.

Christopher B Massa1, Pamela Scott1, Elena Abramova1, Carol Gardner1, Debra L Laskin1, Andrew J Gow2.   

Abstract

Acute Cl2 exposure following industrial accidents or military/terrorist activity causes pulmonary injury and severe acute respiratory distress. Prior studies suggest that antioxidant depletion is important in producing dysfunction, however a pathophysiologic mechanism has not been elucidated. We propose that acute Cl2 inhalation leads to oxidative modification of lung lining fluid, producing surfactant inactivation, inflammation and mechanical respiratory dysfunction at the organ level. C57BL/6J mice underwent whole-body exposure to an effective 60ppm-hour Cl2 dose, and were euthanized 3, 24 and 48h later. Whereas pulmonary architecture and endothelial barrier function were preserved, transient neutrophilia, peaking at 24h, was noted. Increased expression of ARG1, CCL2, RETLNA, IL-1b, and PTGS2 genes was observed in bronchoalveolar lavage (BAL) cells with peak change in all genes at 24h. Cl2 exposure had no effect on NOS2 mRNA or iNOS protein expression, nor on BAL NO3(-) or NO2(-). Expression of the alternative macrophage activation markers, Relm-α and mannose receptor was increased in alveolar macrophages and pulmonary epithelium. Capillary surfactometry demonstrated impaired surfactant function, and altered BAL phospholipid and surfactant protein content following exposure. Organ level respiratory function was assessed by forced oscillation technique at 5 end expiratory pressures. Cl2 exposure had no significant effect on either airway or tissue resistance. Pulmonary elastance was elevated with time following exposure and demonstrated PEEP refractory derecruitment at 48h, despite waning inflammation. These data support a role for surfactant inactivation as a physiologic mechanism underlying respiratory dysfunction following Cl2 inhalation.
Copyright © 2014 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Alternative activation; Bronchoalveolar lavage; Nitric oxide; Pulmonary mechanics; Respiratory impedance

Mesh:

Substances:

Year:  2014        PMID: 24582687      PMCID: PMC4361901          DOI: 10.1016/j.taap.2014.02.006

Source DB:  PubMed          Journal:  Toxicol Appl Pharmacol        ISSN: 0041-008X            Impact factor:   4.219


  56 in total

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  16 in total

1.  Lung Function before and after a Large Chlorine Gas Release in Graniteville, South Carolina.

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Journal:  Ann Am Thorac Soc       Date:  2017-06

3.  Exposure to Sodium Hypochlorite or Cigarette Smoke Induces Lung Injury and Mechanical Impairment in Wistar Rats.

Authors:  Beatriz Mangueira Saraiva-Romanholo; Isabella Santos de Genaro; Francine Maria de Almeida; Soraia Nogueira Felix; Marina Ribeiro Cottes Lopes; Thaís Santos Amorim; Rodolfo Paula Vieira; Fernanda Magalhães Arantes-Costa; Milton Arruda Martins; Iolanda de Fátima Lopes Calvo Tibério; Carla Máximo Prado
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Review 4.  Halogen-Induced Chemical Injury to the Mammalian Cardiopulmonary Systems.

Authors:  Dylan R Addis; Saurabh Aggarwal; Ahmed Lazrak; Tamas Jilling; Sadis Matalon
Journal:  Physiology (Bethesda)       Date:  2021-09-01

5.  The role of inducible nitric oxide synthase for interstitial remodeling of alveolar septa in surfactant protein D-deficient mice.

Authors:  Lars Knudsen; Elena N Atochina-Vasserman; Christopher B Massa; Bastian Birkelbach; Chang-Jiang Guo; Pamela Scott; Beat Haenni; Michael F Beers; Matthias Ochs; Andrew J Gow
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6.  Regulation of Lung Macrophage Activation and Oxidative Stress Following Ozone Exposure by Farnesoid X Receptor.

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8.  Development of a clinical assay to measure chlorinated tyrosine in hair and tissue samples using a mouse chlorine inhalation exposure model.

Authors:  Brooke G Pantazides; Brian S Crow; Jennifer Quiñones-González; Jonas W Perez; Jill A Harvilchuck; Jeffrey J Wallery; Tom C Hu; Jerry D Thomas; Rudolph C Johnson; Thomas A Blake
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9.  The Metabolic Prospective and Redox Regulation of Macrophage Polarization.

Authors:  Chao He; A Brent Carter
Journal:  J Clin Cell Immunol       Date:  2015-11-30

10.  Low-dose AgNPs reduce lung mechanical function and innate immune defense in the absence of cellular toxicity.

Authors:  Danielle J Botelho; Bey Fen Leo; Christopher B Massa; Srijata Sarkar; Terry D Tetley; Kian Fan Chung; Shu Chen; Mary P Ryan; Alexandra E Porter; Junfeng Zhang; Stephan K Schwander; Andrew J Gow
Journal:  Nanotoxicology       Date:  2015-07-07       Impact factor: 5.913

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