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Operationalizing the Exposome Using Passive Silicone Samplers.

Zoe Coates Fuentes1, Yuri Levin Schwartz1, Anna R Robuck1

  • 1Department of Environmental Medicine and Public Health, Icahn School of Medicine at Mount Sinai, 1428 Madison Ave, New York, NY USA.

Current Pollution Reports
|January 10, 2022
PubMed
Summary
This summary is machine-generated.

Passive sampling devices (PSDs) offer a universal approach for deep exposome phenotyping, enabling comprehensive chemical assessment for environmental health studies. Silicone PSDs improve exposure measurement variability and disease risk understanding in human research.

Keywords:
ExposomeExposure assessmentHigh-resolution mass spectrometryPrecision medicineSilicone wristband samplers

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Area of Science:

  • Environmental Health Sciences
  • Analytical Chemistry
  • Toxicology

Background:

  • The exposome, encompassing environmental exposures and biological responses, is crucial for understanding non-genetic disease causes.
  • Current exposome operationalization is limited by the lack of universal methods for complex, dynamic exposures.
  • Passive sampling devices (PSDs) offer a solution for deep exposome phenotyping and chemical assessment.

Purpose of the Study:

  • To highlight the advantages of silicone PSDs for exposome research.
  • To review the application of PSDs in population studies and chemical characterization.
  • To assess the integration of PSDs into observational studies for improved exposure assessment.

Main Methods:

  • Review of silicone PSD applications in population studies.
  • Evaluation of chemical classes characterized by PSDs.
  • Assessment of practical considerations for PSD implementation (precleaning, analytical methods, cost).

Main Results:

  • Silicone PSDs enable comprehensive chemical assessment using untargeted high-resolution mass spectrometry.
  • PSDs facilitate exposome-wide association studies by characterizing a broad range of chemicals.
  • Precleaning, analytical considerations, and cost are key factors for PSD integration.

Conclusions:

  • Silicone PSDs provide a feasible strategy for characterizing the external exposome in human studies.
  • PSDs reduce variability in exposure measures, leading to a more thorough accounting of the exposome.
  • Continued development of PSDs will enhance understanding of environmental exposures and disease risk.