Literature DB >> 28912380

Exposure of neonatal mice to bromine impairs their alveolar development and lung function.

Tamas Jilling1, Changchun Ren1, Aaron Yee1, Saurabh Aggarwal2, Brian Halloran1, Namasivayam Ambalavanan1, Sadis Matalon2.   

Abstract

The halogen bromine (Br2) is used extensively in industry and stored and transported in large quantities. Its accidental or malicious release into the atmosphere has resulted in significant casualties. The pathophysiology of Br2-induced lung injury has been studied in adult animals, but the consequences of Br2 exposure to the developing lung are completely unknown. We exposed neonatal mouse littermates on postnatal day 3 (P3) to either Br2 at 400 ppm for 30 min (400/30), to Br2 at 600 ppm for 30 min (600/30), or to room air, then returned them to their dams and observed until P14. Mice exposed to Br2 had decreased survival (S) and had decreased weight (W) at P14 in the 400/30 group (S = 63.5%, W = 6.67 ± 0.08) and in the 600/30 group (S = 36.1%, W = 5.13 ± 0.67) as compared with air breathing mice (S = 100%, W = 7.96 ± 0.30). Alveolar development was impaired, as evidenced by increased mean linear intercept at P14. At P14, Br2 exposed mice also exhibited a decrease of arterial partial pressure of oxygen, decreased quasi-static lung compliance, as well as increased alpha smooth muscle actin mRNA and protein and increased mRNA for IL-1β, IL-6, CXCL1, and TNFα. Global gene expression, evaluated by RNA sequencing and Ingenuity Pathway Analysis, revealed persistent abnormalities in gene expression profiles at P14 involving pathways of "formation of lung" and "pulmonary development." The data indicate that Br2 inhalation injury early in life results in severe lung developmental consequences, wherein persistent inflammation and global altered developmental gene expression are likely mechanistic contributors.

Entities:  

Keywords:  bronchopulmonary dysplasia; halogen; lung development; lung injury

Mesh:

Substances:

Year:  2017        PMID: 28912380      PMCID: PMC5866428          DOI: 10.1152/ajplung.00315.2017

Source DB:  PubMed          Journal:  Am J Physiol Lung Cell Mol Physiol        ISSN: 1040-0605            Impact factor:   5.464


  34 in total

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Journal:  Am J Physiol Lung Cell Mol Physiol       Date:  2013-12-13       Impact factor: 5.464

5.  Mechanisms and Treatment of Halogen Inhalation-Induced Pulmonary and Systemic Injuries in Pregnant Mice.

Authors:  James A Lambert; Matthew A Carlisle; Adam Lam; Saurabh Aggarwal; Stephen Doran; Changchun Ren; Wayne E Bradley; Louis Dell'Italia; Namasivayam Ambalavanan; David A Ford; Rakesh P Patel; Tamas Jilling; Sadis Matalon
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6.  Disruption of tracheobronchial airway growth following postnatal exposure to ozone and ultrafine particles.

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7.  Modeling an irritant gas plume for epidemiologic study.

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8.  A prospective study of the impact of air pollution on respiratory symptoms and infections in infants.

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Journal:  Am J Respir Crit Care Med       Date:  2013-06-15       Impact factor: 21.405

9.  The lung response to ozone is determined by age and is partially dependent on toll-Like receptor 4.

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10.  Stage-dependent and locus-specific role of histone demethylase Jumonji D3 (JMJD3) in the embryonic stages of lung development.

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  12 in total

1.  Vascular permeability disruption explored in the proteomes of mouse lungs and human microvascular cells following acute bromine exposure.

Authors:  Dylan R Addis; Saurabh Aggarwal; Stephen F Doran; Ming-Yuan Jian; Israr Ahmad; Kyoko Kojima; David A Ford; Sadis Matalon; James A Mobley
Journal:  Am J Physiol Lung Cell Mol Physiol       Date:  2020-06-24       Impact factor: 5.464

Review 2.  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

3.  Sex differences in cardiopulmonary effects of acute bromine exposure.

Authors:  Juan Xavier Masjoan Juncos; Shazia Shakil; Aamir Ahmad; Nithya Mariappan; Iram Zafar; Wayne E Bradley; Louis J Dell'Italia; Aftab Ahmad; Shama Ahmad
Journal:  Toxicol Res (Camb)       Date:  2021-08-27       Impact factor: 2.680

4.  Halogen gas exposure: toxic effects on the parturient.

Authors:  Dylan R Addis; James A Lambert; David A Ford; Tamas Jilling; Sadis Matalon
Journal:  Toxicol Mech Methods       Date:  2020-03-30       Impact factor: 4.019

Review 5.  Implication of Oxidative Stress in Fetal Programming of Cardiovascular Disease.

Authors:  Pilar Rodríguez-Rodríguez; David Ramiro-Cortijo; Cynthia G Reyes-Hernández; Angel L López de Pablo; M Carmen González; Silvia M Arribas
Journal:  Front Physiol       Date:  2018-05-23       Impact factor: 4.566

6.  Chronic cardiac structural damage, diastolic and systolic dysfunction following acute myocardial injury due to bromine exposure in rats.

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Review 7.  Halogen exposure injury in the developing lung.

Authors:  Dylan R Addis; Adam Molyvdas; Namasivayam Ambalavanan; Sadis Matalon; Tamas Jilling
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Review 8.  Halogen Inhalation-Induced Lung Injury and Acute Respiratory Distress Syndrome.

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Journal:  Chin Med J (Engl)       Date:  2018-05-20       Impact factor: 2.628

9.  Supraphysiological Levels of Oxygen Exposure During the Neonatal Period Impairs Signaling Pathways Required for Learning and Memory.

Authors:  Manimaran Ramani; Ranjit Kumar; Brian Halloran; Charitharth Vivek Lal; Namasivayam Ambalavanan; Lori L McMahon
Journal:  Sci Rep       Date:  2018-07-02       Impact factor: 4.379

10.  Bromine inhalation mimics ischemia-reperfusion cardiomyocyte injury and calpain activation in rats.

Authors:  Shama Ahmad; Juan Xavier Masjoan Juncos; Aftab Ahmad; Ahmed Zaky; Chih-Chang Wei; Wayne E Bradley; Iram Zafar; Pamela Powell; Nithya Mariappan; Nilam Vetal; William E Louch; David A Ford; Stephen F Doran; Sadis Matalon; Louis J Dell'Italia
Journal:  Am J Physiol Heart Circ Physiol       Date:  2018-10-31       Impact factor: 4.733

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