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Collection and Extraction of Occupational Air Samples for Analysis of Fungal DNA
Published on: May 2, 2018
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.
Abstract:
Evaluating fungal contamination indoors is complicated because of the many different sampling methods utilized. In this study, fungal contamination was evaluated using five sampling methods and four matrices for results. The five sampling methods were a 48 hour indoor air sample collected with a Button™ inhalable aerosol sampler and four types of dust samples: a vacuumed floor dust sample, newly settled dust collected for four weeks onto two types of electrostatic dust cloths (EDCs) in trays, and a wipe sample of dust from above floor surfaces. The samples were obtained in the bedrooms of asthmatic children (n = 14). Quantitative polymerase chain reaction (qPCR) was used to analyze the dust and air samples for the 36 fungal species that make up the Environmental Relative Moldiness Index (ERMI). The results from the samples were compared by four matrices: total concentration of fungal cells, concentration of fungal species associated with indoor environments, concentration of fungal species associated with outdoor environments, and ERMI values (or ERMI-like values for air samples). The ERMI values for the dust samples and the ERMI-like values for the 48 hour air samples were not significantly different. The total cell concentrations of the 36 species obtained with the four dust collection methods correlated significantly (r = 0.64-0.79, p < 0.05), with the exception of the vacuumed floor dust and newly settled dust. In addition, fungal cell concentrations of indoor associated species correlated well between all four dust sampling methods (r = 0.68-0.86, p < 0.01). No correlation was found between the fungal concentrations in the air and dust samples primarily because of differences in concentrations of Cladosporium cladosporioides Type 1 and Epicoccum nigrum. A representative type of dust sample and a 48 hour air sample might both provide useful information about fungal exposures.
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.

