Literature DB >> 21916744

Pulmonary effects after acute inhalation of oil dispersant (COREXIT EC9500A) in rats.

Jenny R Roberts1, Jeffrey S Reynolds, Janet A Thompson, Eric J Zaccone, Michael J Shimko, William T Goldsmith, Mark Jackson, Walter McKinney, David G Frazer, Allison Kenyon, Michael L Kashon, Giovanni Piedimonte, Vincent Castranova, Jeffrey S Fedan.   

Abstract

COREXIT EC9500A (COREXIT) was used to disperse crude oil during the 2010 Deepwater Horizon oil spill. While the environmental impact of COREXIT has been examined, the pulmonary effects are unknown. Investigations were undertaken to determine whether inhaled COREXIT elicits airway inflammation, alters pulmonary function or airway reactivity, or exerts pharmacological effects. Male rats were exposed to COREXIT (mean 27 mg/m(3), 5 h). Bronchoalveolar lavage was performed on d 1 and 7 postexposure. Lactate dehydrogenase (LDH) and albumin were measured as indices of lung injury; macrophages, neutrophils, lymphocytes, and eosinophils were quantified to evaluate inflammation; and oxidant production by macrophages and neutrophils was measured. There were no significant effects of COREXIT on LDH, albumin, inflammatory cell levels or oxidant production at either time point. In conscious animals, neither breathing frequency nor specific airway resistance were altered at 1 hr, 1 d and 7 d postexposure. Airway resistance responses to methacholine (MCh) aerosol in anesthetized animals were unaffected at 1 and 7 d postexposure, while dynamic compliance responses were decreased after 1 d but not 7 d. In tracheal strips, in the presence or absence of MCh, low concentrations of COREXIT (0.001% v/v) elicited relaxation; contraction occurred at 0.003-0.1% v/v. In isolated, perfused trachea, intraluminally applied COREXIT produced similar effects but at higher concentrations. COREXIT inhibited neurogenic contractile responses of strips to electrical field stimulation. Our findings suggest that COREXIT inhalation did not initiate lung inflammation, but may transiently increase the difficulty of breathing.

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Year:  2011        PMID: 21916744     DOI: 10.1080/15287394.2011.606794

Source DB:  PubMed          Journal:  J Toxicol Environ Health A        ISSN: 0098-4108


  9 in total

1.  Effects of COREXIT dispersants on cytotoxicity parameters in a cultured human bronchial airway cells, BEAS-2B.

Authors:  Yongli Shi; Astrid M Roy-Engel; He Wang
Journal:  J Toxicol Environ Health A       Date:  2013

2.  A computer-controlled whole-body inhalation exposure system for the oil dispersant COREXIT EC9500A.

Authors:  William Travis Goldsmith; Walter McKinney; Mark Jackson; Brandon Law; Toni Bledsoe; Paul Siegel; Jared Cumpston; David Frazer
Journal:  J Toxicol Environ Health A       Date:  2011

3.  Neurotoxicity following acute inhalation exposure to the oil dispersant COREXIT EC9500A.

Authors:  Krishnan Sriram; Gary X Lin; Amy M Jefferson; William T Goldsmith; Mark Jackson; Walter McKinney; David G Frazer; Victor A Robinson; Vincent Castranova
Journal:  J Toxicol Environ Health A       Date:  2011

4.  The Gulf Long-Term Follow-Up Study (GuLF STUDY): Biospecimen collection at enrollment.

Authors:  Lawrence S Engel; Richard K Kwok; Aubrey K Miller; Aaron Blair; Matthew D Curry; John A McGrath; Dale P Sandler
Journal:  J Toxicol Environ Health A       Date:  2017-04-18

Review 5.  The Deepwater Horizon Oil Spill Through the Lens of Human Health and the Ecosystem.

Authors:  Maureen Lichtveld; Samendra Sherchan; Kaitlyn B Gam; Richard K Kwok; Christopher Mundorf; Arti Shankar; Lissa Soares
Journal:  Curr Environ Health Rep       Date:  2016-12

6.  The deepwater horizon oil spill coast guard cohort study: A cross-sectional study of acute respiratory health symptoms.

Authors:  Melannie Alexander; Lawrence S Engel; Nathan Olaiya; Li Wang; John Barrett; Laura Weems; Erica G Schwartz; Jennifer A Rusiecki
Journal:  Environ Res       Date:  2018-01-11       Impact factor: 6.498

7.  Evaluation of Pulmonary and Systemic Toxicity of Oil Dispersant (COREXIT EC9500A(®)) Following Acute Repeated Inhalation Exposure.

Authors:  Jenny R Roberts; Stacey E Anderson; Hong Kan; Kristine Krajnak; Janet A Thompson; Allison Kenyon; William T Goldsmith; Walter McKinney; David G Frazer; Mark Jackson; Jeffrey S Fedan
Journal:  Environ Health Insights       Date:  2015-02-09

8.  Respiratory, Dermal, and Eye Irritation Symptoms Associated with Corexit™ EC9527A/EC9500A following the Deepwater Horizon Oil Spill: Findings from the GuLF STUDY.

Authors:  Craig J McGowan; Richard K Kwok; Lawrence S Engel; Mark R Stenzel; Patricia A Stewart; Dale P Sandler
Journal:  Environ Health Perspect       Date:  2017-09-15       Impact factor: 9.031

9.  Corexit-EC9527A Disrupts Retinol Signaling and Neuronal Differentiation in P19 Embryonal Pluripotent Cells.

Authors:  Yanling Chen; David H Reese
Journal:  PLoS One       Date:  2016-09-29       Impact factor: 3.240

  9 in total

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