← Explorer/Network

Evaluation of tetrachloroethylene (PCE) and its degradation products in human exhaled breath and indoor air in a community setting

J Lee, Alaina K Bryant, Marwan Alajlouni +3 more2024Journal of Breath ResearchJournal Article
10.1088/1752-7163/ad67fdPubMedFree full text
Respiratory/Sinus

Abstract

Tetrachloroethylene (PCE) is a widely utilized volatile chemical in industrial applications, including dry cleaning and metal degreasing. Exposure to PCE potentially presents a significant health risk to workers as well as communities near contamination sites. Adverse health effects arise not only from PCE, but also from PCE degradation products, such as trichloroethylene (TCE) and vinyl chloride (VC). PCE, TCE, and VC can contaminate water, soil, and air, leading to exposure through multiple pathways, including inhalation, ingestion, and dermal contact. This study focused on a community setting in Martinsville, Indiana, a working-class Midwestern community in the United States, where extensive PCE contamination has occurred due to multiple contamination sites (referring to 'plumes'), including a Superfund site. Utilizing proton transfer reaction time-of-flight mass spectrometry (PTR-TOF-MS), PCE, TCE, and VC concentrations were measured in the exhaled breath of 73 residents from both within and outside the plume areas. PCE was detected in 66 samples, TCE in 26 samples, and VC in 68 samples. Our results revealed a significant positive correlation between the concentrations of these compounds in exhaled breath and indoor air (Pearson correlation coefficients: PCE = 0.75, TCE = 0.71, and VC = 0.89). This study confirms the presence of PCE and its degradation products in exhaled breath in a community exposure investigation, demonstrating the potential of using exhaled breath analysis in monitoring exposure to environmental contaminants. This study showed the feasibility of utilizing PTR-TOF-MS in community investigations to assess exposure to PCE and its degradation products by measuring these compounds in exhaled breath and indoor air.

Cited By (1)

  • Tetrachloroethylene exposure and neurobehavioral performance among children living near multiple contamination sitesThe Science of The Total Environment · 2024

References (2)

  • Apartment residents' and day care workers' exposures to tetrachloroethylene and deficits in visual contrast sensitivity.Environmental Health Perspectives · 2002
  • A pilot study characterizing tetrachloroethylene exposure with exhaled breath in an impacted communityEnvironmental Pollution · 2021

Related Papers

  • Misalignment between Clinical Mold Antigen Extracts and Airborne Molds Found in Water-damaged HomesAnnals of the American Thoracic Society · 2021 · 1 shared tag
  • Microbiological Analysis of Indoor Air in Selected Primary Schools: Health Concerns and RecommendationsJournal of Multidisciplinary Science MIKAILALSYS · 2023 · 1 shared tag
  • Exposures in the Indoor Environment and Prevalence of Allergic Conditions in the United States of AmericaInternational Journal of Environmental Research and Public Health · 2021 · 1 shared tag
  • Dampness, mould, onset and remission of adult respiratory symptoms, asthma and rhinitisEuropean Respiratory Journal · 2019 · 1 shared tag
  • Impact of Epidemic Intelligence Service Training in Occupational Respiratory EpidemiologyATS Scholar · 2023 · 1 shared tag
  • Streptomyces albireticuli lung infection managed as a pulmonary air cyst: a case report and literature reviewFrontiers in Cellular and Infection Microbiology · 2024 ·
1 shared tag