Comparison of indoor air sampling and dust collection methods for fungal exposure assessment using quantitative PCR

Jennie Cox1, Reshmi Indugula, Stephen Vesper

  • 1Department of Environmental Health University of Cincinnati, P.O. Box 670056, Cincinnati, OH 45267-0056, USA. reponeta@ucmail.uc.edu.

Insights

Evaluating indoor fungal contamination is complex. This study found that both dust and air samples, using various methods, can provide useful fungal exposure data, especially for indoor-associated species.

Area of Science:

  • Environmental Science
  • Mycology
  • Indoor Air Quality

Background:

  • Assessing indoor fungal contamination is challenging due to diverse sampling techniques.
  • Standardized methods are needed for accurate fungal exposure assessment in homes.

Purpose of the Study:

  • To compare the effectiveness of five different sampling methods for evaluating fungal contamination.
  • To analyze fungal species concentrations using four matrices: total cells, indoor-associated species, outdoor-associated species, and Environmental Relative Moldiness Index (ERMI).

Main Methods:

  • Collected indoor air samples (48-hour) using an inhalable aerosol sampler.
  • Gathered dust samples via vacuum, electrostatic dust cloths (EDCs), and surface wipes.
  • Utilized quantitative polymerase chain reaction (qPCR) to quantify 36 fungal species.

Main Results:

  • ERMI values from dust and air samples showed no significant difference.
  • Total fungal cell concentrations correlated significantly between most dust sampling methods (r = 0.64–0.79).
  • Indoor-associated fungal species concentrations correlated well across all four dust sampling methods (r = 0.68–0.86).

Conclusions:

  • Both dust and air sampling methods can yield valuable information on fungal exposures.
  • Differences in specific fungal species (e.g., Cladosporium cladosporioides, Epicoccum nigrum) limited air-dust correlation.
  • Further research may refine the use of these methods for comprehensive fungal assessment.

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