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Project Publications: Louisiana State University: Oxidative Stress Core

Superfund Research Program

Oxidative Stress Core

Project Leader: Tammy R. Dugas
Grant Number: P42ES013648
Funding Period: 2011-2018
View this project in the NIH Research Portfolio Online Reporting Tools (RePORT)

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Publications

2018

2016

  • Dugas TR, Lomnicki S, Cormier SA, Dellinger B, Reams MA. 2016. Addressing emerging risks: scientific and regulatory challenges associated with environmentally persistent free radicals. Int J Environ Res Public Health 13(6):573. doi:10.3390/ijerph13060573 PMID:27338429 PMCID:PMC4924030

2015

  • Jaligama S, Chen Z, Saravia J, Yadav N, Lomnicki S, Dugas TR, Cormier SA. 2015. Exposure to deepwater horizon crude oil burnoff particulate matter induces pulmonary inflammation and alters adaptive immune response. Environ Sci Technol 49(14):8769-8776. doi:10.1021/acs.est.5b01439 PMID:26115348 PMCID:PMC4526136

2014

  • Lee GI, Saravia J, You D, Shrestha B, Jaligama S, Hebert VY, Dugas TR, Cormier SA. 2014. Exposure to combustion generated environmentally persistent free radicals enhances severity of influenza virus infection. Part Fibre Toxicol 11:57. doi:10.1186/s12989-014-0057-1 PMID:25358535 PMCID:PMC4222384

2013

  • Kelley MA, Hebert VY, Thibeaux TM, Orchard MA, Hasan F, Cormier SA, Thevenot PT, Lomnicki S, Varner KJ, Dellinger B, Latimer BM, Dugas TR. 2013. Model combustion-generated particulate matter containing persistent free radicals redox cycle to produce reactive oxygen species. Chem Res Toxicol 26(12):1862-1871. doi:10.1021/tx400227s PMID:24224526 PMCID:PMC4112599
  • Thevenot PT, Saravia J, Giaimo JD, Happel KI, Dugas TR, Cormier SA. 2013. Chronic alcohol induces M2 polarization enhancing pulmonary disease caused by exposure to particulate air pollution. Alcohol Clin Exp Res 37(11):1910-1919. doi:10.1111/acer.12184 PMID:23763452 PMCID:PMC3775861
  • Thevenot PT, Saravia J, Jin N, Giaimo JD, Chustz RE, Mahne S, Kelley MA, Hebert VY, Dellinger B, Dugas TR, DeMayo FJ, Cormier SA. 2013. Radical-containing ultrafine particulate matter initiates epithelial-to-mesenchymal transitions in airway epithelial cells. Am J Respir Cell Mol Biol 48(2):188-197. doi:10.1165/rcmb.2012-0052OC PMID:23087054 PMCID:PMC3604062
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