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Inhalation Toxicology
International Forum for Respiratory Research
Volume 35, 2023 - Issue 5-6
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Research Articles

Contributions of particulate and gas phases of simulated burn pit smoke exposures to impairment of respiratory function

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Pages 129-138 | Received 19 Sep 2022, Accepted 06 Jan 2023, Published online: 24 Jan 2023

References

  • Abdel-Shafy HI, Mansour MSM. 2016. A review on polycyclic aromatic hydrocarbons: source, environmental impact, effect on human health and remediation. Egypt J Pet. 25(1):107–123.
  • Adetona O, Reinhardt TE, Domitrovich J, Broyles G, Adetona AM, Kleinman MT, Ottmar RD, Naeher LP. 2016. Review of the health effects of wildland fire smoke on wildland firefighters and the public. Inhal Toxicol. 28(3):95–139.
  • Aurell J, Barnes M, Gullett BK, Holder A, Eninger R. 2019. Methodology for characterizing emissions from small (0.5–2 MTD) batch-fed gasification systems using multiple waste compositions. Waste Manag. 87:398–406.
  • Baird CP. 2012. Review of the Institute of Medicine report: long-term health consequences of exposure to burn pits in Iraq and Afghanistan. US Army Med Dep J. July-September 2012:43–47.
  • Berman R, Rose CS, Downey GP, Day BJ, Chu HW. 2021. Role of particulate matter from Afghanistan and Iraq in deployment-related lung disease. Chem Res Toxicol. 34(12):2408–2423.
  • Bith-Melander P, Ratliff J, Poisson C, Jindal C, Ming Choi Y, Efird JT. 2021. Slow burns: a qualitative study of burn pit and toxic exposures among military veterans serving in Afghanistan, Iraq and throughout the Middle East. Ann Psychiatry Clin Neurosci. 4(1):1042.
  • Canova C, Torresan S, Simonato L, Scapellato ML, Tessari R, Visentin A, Lotti M, Maestrelli P. 2010. Carbon monoxide pollution is associated with decreased lung function in asthmatic adults. Eur Respir J. 35(2):266–272.
  • Cascio WE. 2018. Wildland fire smoke and human health. Sci Total Environ. 624:586–595.
  • Cassee FR, Arts JH, Groten JP, Feron VJ. 1996. Sensory irritation to mixtures of formaldehyde, acrolein, and acetaldehyde in rats. Arch Toxicol. 70(6):329–337.
  • Chen H, Samet JM, Bromberg PA, Tong H. 2021. Cardiovascular health impacts of wildfire smoke exposure. Part Fibre Toxicol. 18(1):2–2.
  • Engelbrecht JP, McDonald EV, Gillies JA, Jayanty RKM, Casuccio G, Gertler AW. 2009. Characterizing mineral dusts and other aerosols from the Middle East—Part 1: ambient sampling. Inhal Toxicol. 21(4):297–326.
  • Falvo MJ, Osinubi OY, Sotolongo AM, Helmer DA. 2015. Airborne hazards exposure and respiratory health of Iraq and Afghanistan veterans. Epidemiol Rev. 37(1):116–130.
  • Foster WM, Walters DM, Longphre M, Macri K, Miller LM. 2001. Methodology for the measurement of mucociliary function in the mouse by scintigraphy. J Appl Physiol. 90(3):1111–1117.
  • Garshick E, Abraham JH, Baird CP, Ciminera P, Downey GP, Falvo MJ, Hart JE, Jackson DA, Jerrett M, Kuschner W. 2019. Respiratory health after military service in Southwest Asia and Afghanistan: an official American Thoracic Society workshop report. Ann Am Thorac Soc. 16(8):e1–e16.
  • George IJ, Hays MD, Snow R, Faircloth J, George BJ, Long T, Baldauf RW. 2014. Cold temperature and biodiesel fuel effects on speciated emissions of volatile organic compounds from diesel trucks. Environ Sci Technol. 48(24):14782–14789.
  • Hargrove MM, Kim YH, King C, Wood CE, Gilmour MI, Dye JA, Gavett SH. 2019. Smoldering and flaming biomass wood smoke inhibit respiratory responses in mice. Inhal Toxicol. 31(6):236–247.
  • Heinrich J, Schikowski T. 2018. COPD patients as vulnerable subpopulation for exposure to ambient air pollution. Curr Environ Health Rep. 5(1):70–76.
  • Hill CJ, Meyer CD, McLean JE, Anderson DC, Hao Y, Lin FC, … Capra GG. 2022. Burn pit exposure is associated with increased sinonasal disease. J Occup Environ Med. 64(8):629–634.
  • Inui K, Chen C, Pauli JL, Kuroki C, Tashiro S, Kanmura Y, Kashiwadani H, Kuwaki T. 2016. Nasal TRPA1 mediates irritant-induced bradypnea in mice. Physiol Rep. 4(24):e13098.
  • Karanasiou A, Alastuey A, Amato F, Renzi M, Stafoggia M, Tobias A, Reche C, Forastiere F, Gumy S, Mudu P. 2021. Short-term health effects from outdoor exposure to biomass burning emissions: a review. Sci Total Environ. 781:146739.
  • Kim YH, King C, Krantz T, Hargrove MM, George IJ, McGee J, Copeland L, Hays MD, Landis MS, Higuchi M. 2019. The role of fuel type and combustion phase on the toxicity of biomass smoke following inhalation exposure in mice. Arch Toxicol. 93(6):1501–1513.
  • Kim YH, Warren SH, Kooter I, Williams WC, George IJ, Vance SA, Hays MD, Higuchi MA, Gavett SH, DeMarini DM. 2021. Chemistry, lung toxicity and mutagenicity of burn pit smoke-related particulate matter. Part Fibre Toxicol. 18(1):45.
  • Kim YH, Warren SH, Krantz QT, King C, Jaskot R, Preston WT, George BJ, Hays MD, Landis MS, Higuchi M. 2018. Mutagenicity and lung toxicity of smoldering vs. flaming emissions from various biomass fuels: implications for health effects from wildland fires. Environ Health Perspect. 126(1):017011.
  • King MS, Eisenberg R, Newman JH, Tolle JJ, Harrell FE, Nian H, Ninan M, Lambright ES, Sheller JR, Johnson JE. 2011. Constrictive bronchiolitis in soldiers returning from Iraq and Afghanistan. N Engl J Med. 365(3):222–230.
  • Leland EM, Zhang Z, Kelly KM, Ramanathan M. 2021. Role of environmental air pollution in chronic rhinosinusitis. Curr Allergy Asthma Rep. 21(8):42.
  • Li J, Garshick E, Hart JE, Li L, Shi L, Al-Hemoud A, Huang S, Koutrakis P. 2021. Estimation of ambient PM2.5 in Iraq and Kuwait from 2001 to 2018 using machine learning and remote sensing. Environ Int. 151:106445.
  • Liu J, Lezama N, Gasper J, Kawata J, Morley S, Helmer D, Ciminera P. 2016. Burn pit emissions exposure and respiratory and cardiovascular conditions among airborne hazards and open burn pit registry participants. J Occup Environ Med. 58(7):e249-255–e255.
  • Lu X, Li R, Yan X. 2021. Airway hyperresponsiveness development and the toxicity of PM2.5. Environ Sci Pollut Res Int. 28(6):6374–6391.
  • Mallon CTM, Rohrbeck MP, Haines MKM, Jones DP, Utell M, Hopke PK, Phipps RP, Walker DI, Thatcher T, Woeller CF. 2016. Introduction to department of defense research on burn pits, biomarkers, and health outcomes related to deployment in Iraq and Afghanistan. J Occup Environ Med. 58(8 Suppl 1): S3–S11.
  • Mammarappallil JG, Shofer S, Carraway MS, Tucker J, Womack S, Ainslie M, Charles HC. 2020. Utilization of 19F MRI for identification of Iraq-Afghanistan war lung injury. Mil Med. 185(Suppl 1):50–56.
  • Martin WK, Padilla S, Kim YH, Hunter DL, Hays MD, DeMarini DM, Hazari MS, Gilmour MI, Farraj AK. 2021. Zebrafish irritant responses to wildland fire-related biomass smoke are influenced by fuel type, combustion phase, and byproduct chemistry. J Toxicol Environ Health A. 84(16):674–688.
  • Mayr FB, Spiel A, Leitner J, Marsik C, Germann P, Ullrich R, Wagner O, Jilma B. 2005. Effects of carbon monoxide inhalation during experimental endotoxemia in humans. Am J Respir Crit Care Med. 171(4):354–360.
  • McGee MA, Kamal AS, McGee JK, Wood CE, Dye JA, Krantz QT, Landis MS, Gilmour MI, Gavett SH. 2015. Differential effects of particulate matter upwind and downwind of an urban freeway in an allergic mouse model. Environ Sci Technol. 49(6):3930–3939.
  • Morris JB. 1997. Dosimetry, toxicity and carcinogenicity of inspired acetaldehyde in the rat. Mutat Res. 380(1–2):113–124.
  • Nishikawa A, Nagano K, Kojima H, Ogawa K. 2021. A comprehensive review of mechanistic insights into formaldehyde-induced nasal cavity carcinogenicity. Regul Toxicol Pharmacol. 123:104937.
  • Orellano P, Quaranta N, Reynoso J, Balbi B, Vasquez J. 2017. Effect of outdoor air pollution on asthma exacerbations in children and adults: systematic review and multilevel meta-analysis. PLOS One. 12(3):e0174050.
  • OSHA. 2021a. Benzene occupational chemical database. https://www.osha.gov/chemicaldata/491
  • OSHA. 2021b. Formaldehyde. Occupational chemcial database. https://www.osha.gov/chemicaldata/377.
  • OSHA 2022. Acrolein OSHA occupation chemical database https://www.osha.gov/chemicaldata/51.
  • Otterbein LE, Bach FH, Alam J, Soares M, Tao Lu H, Wysk M, Davis RJ, Flavell RA, Choi AM. 2000. Carbon monoxide has anti-inflammatory effects involving the mitogen-activated protein kinase pathway. Nat Med. 6(4):422–428.
  • Paterson CA, Sharpe RA, Taylor T, Morrissey K. 2021. Indoor PM2.5, VOCs and asthma outcomes: a systematic review in adults and their home environments. Environ Res. 202:111631.
  • Pauluhn J, Whalan JE. 2021. Human risk assessment of inhaled irritants: role of sensory stimulations from spatially separated nociceptors. Toxicology. 462:152929.
  • Perez CM, Hazari MS, Ledbetter AD, Haykal-Coates N, Carll AP, Cascio WE, Winsett DW, Costa DL, Farraj AK. 2015. Acrolein inhalation alters arterial blood gases and triggers carotid body-mediated cardiovascular responses in hypertensive rats. Inhal Toxicol. 27(1):54–63.
  • Pugh MJ, Jaramillo CA, Leung KW, Faverio P, Fleming N, Mortensen E, Amuan ME, Wang C-P, Eapen B, Restrepo M. 2016. Increasing prevalence of chronic lung disease in veterans of the wars in Iraq and Afghanistan. Mil Med. 181(5):476–481.
  • Renne R, Brix A, Harkema J, Herbert R, Kittel B, Lewis D, March T, Nagano K, Pino M, Rittinghausen S. 2009. Proliferative and nonproliferative lesions of the rat and mouse respiratory tract. Toxicol Pathol. 37(7 Suppl):5S–73S.
  • Rivera AC, Powell TM, Boyko EJ, Lee RU, Faix DJ, Luxton DD, Rull RP. 2018. New-onset asthma and combat deployment: findings from the Millennium Cohort Study. Am J Epidemiol. 187(10):2136–2144.
  • Schneiderman AI, Dougherty DD, Fonseca VP, Wolters CL, Bossarte RM, Arjomandi M. 2017. Diagnosing chronic obstructive pulmonary disease among Afghanistan and Iraq veterans: veterans affair’s concordance with clinical guidelines for spirometry administration. Mil Med. 182(9):e1993–e2000.
  • Smith MR, Woeller CF, Uppal K, Thatcher TH, Walker DI, Hopke PK, Rohrbeck P, Mallon TM, Krahl PL, Utell MJ. 2019. Associations of Benzo(ghi)perylene and heptachlorodibenzo-p-dioxin in serum of service personnel deployed to Balad, Iraq, and Bagram, Afghanistan correlates with perturbed amino acid metabolism in human lung fibroblasts. J Occup Environ Med. 61(Suppl 12):S35–S44.
  • Szema AM, Peters MC, Weissinger KM, Gagliano CA, Chen JJ. 2010. New-onset asthma among soldiers serving in Iraq and Afghanistan. Allergy Asthma Proc. 31(5):67–71.
  • Urbanski S. 2014. Wildland fire emissions, carbon, and climate: emission factors. For Ecol Manage. 317:51–60.
  • Wauters RH, Foster BE, Banks TA. 2019. Environmental exposures and asthma in active duty service members. Curr Allergy Asthma Rep. 19(9):43.
  • Xia X, Carroll-Haddad A, Brown N, Utell MJ, Mallon CT, Hopke PK. 2016. Polycyclic aromatic hydrocarbons and polychlorinated dibenzo-p-dioxins/dibenzofurans in microliter samples of human serum as exposure indicators. J Occup Environ Med. 58(8 Suppl 1):S72–S79.

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