JMIR Research Protocols (Oct 2023)

Repeated Human Exposure to Semivolatile Organic Compounds by Inhalation: Novel Protocol for a Nonrandomized Study

  • Elena Reale,
  • Nancy B Hopf,
  • Florian Breider,
  • Dominique Grandjean,
  • Catherine Pirard,
  • Corinne Charlier,
  • Holger M Koch,
  • Aurélie Berthet,
  • Guillaume Suarez,
  • Myriam Borgatta

DOI
https://doi.org/10.2196/51020
Journal volume & issue
Vol. 12
p. e51020

Abstract

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BackgroundSemivolatile organic compounds (SVOCs) comprise several different chemical families used mainly as additives in many everyday products. SVOCs can be released into the air as aerosols and deposit on particulate matter during use by dispersion, evaporation, or abrasion. Phthalates are SVOCs of growing concern due to their endocrine-disrupting effects. Human data on the absorption, distribution, metabolism, and excretion (ADME) of these compounds upon inhalation are almost nonexistent. ObjectiveThe goal of this study is to develop a method for repeated inhalation exposures to SVOCs to characterize their ADME in humans. MethodsWe will use diethylhexyl phthalate (DEHP), a major indoor air pollutant, as a model SVOC in this novel protocol. The Swiss official Commission on Ethics in Human Research, Canton de Vaud, approved the study on October 14, 2020 (project-ID 2020-01095). Participants (n=10) will be repeatedly exposed (2 short daily exposures over 4 days) to isotope-labeled DEHP (DEHP-d4) to distinguish administered exposures from background exposures. DEHP-d4 aerosols will be generated with a small, portable, aerosol-generating device. Participants will inhale DEHP-d4-containing aerosols themselves with this device at home. Air concentrations of the airborne phthalates will be less than or equal to their occupational exposure limit (OEL). DEHP-d4 and its metabolites will be quantified in urine and blood before, during, and after exposure. ResultsOur developed device can generate DEHP-d4 aerosols with diameters of 2.5 μm or smaller and a mean DEHP-d4 mass of 1.4 (SD 0.2) μg per puff (n=6). As of May 2023, we have enrolled 5 participants. ConclusionsThe portable device can be used to generate phthalate aerosols for repeated exposure in human studies. International Registered Report Identifier (IRRID)DERR1-10.2196/51020