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Updated: Aug 5, 2026

Collection and Extraction of Occupational Air Samples for Analysis of Fungal DNA
Published on: May 2, 2018
Detection of airborne Stachybotrys chartarum macrocyclic trichothecene mycotoxins in the indoor environment
T L Brasel1, J M Martin, C G Carriker
1Department of Microbiology and Immunology, TTUHSC, Lubbock, TX 79430, USA.
Abstract:
The existence of airborne mycotoxins in mold-contaminated buildings has long been hypothesized to be a potential occupant health risk. However, little work has been done to demonstrate the presence of these compounds in such environments. The presence of airborne macrocyclic trichothecene mycotoxins in indoor environments with known Stachybotrys chartarum contamination was therefore investigated. In seven buildings, air was collected using a high-volume liquid impaction bioaerosol sampler (SpinCon PAS 450-10) under static or disturbed conditions. An additional building was sampled using an Andersen GPS-1 PUF sampler modified to separate and collect particulates smaller than conidia. Four control buildings (i.e., no detectable S. chartarum growth or history of water damage) and outdoor air were also tested. Samples were analyzed using a macrocyclic trichothecene-specific enzyme-linked immunosorbent assay (ELISA). ELISA specificity was tested using phosphate-buffered saline extracts of the fungal genera Aspergillus, Chaetomium, Cladosporium, Fusarium, Memnoniella, Penicillium, Rhizopus, and Trichoderma, five Stachybotrys strains, and the indoor air allergens Can f 1, Der p 1, and Fel d 1. For test buildings, the results showed that detectable toxin concentrations increased with the sampling time and short periods of air disturbance. Trichothecene values ranged from <10 to >1,300 pg/m3 of sampled air. The control environments demonstrated statistically significantly (P < 0.001) lower levels of airborne trichothecenes. ELISA specificity experiments demonstrated a high specificity for the trichothecene-producing strain of S. chartarum. Our data indicate that airborne macrocyclic trichothecenes can exist in Stachybotrys-contaminated buildings, and this should be taken into consideration in future indoor air quality investigations.
Insights
Airborne mycotoxins, specifically macrocyclic trichothecenes from Stachybotrys chartarum, were detected in mold-contaminated buildings. Toxin levels increased with sampling time and air disturbance, indicating a potential indoor air quality risk.
Area of Science:
- Environmental Science
- Mycology
- Toxicology
Background:
- Airborne mycotoxins in mold-contaminated buildings are a suspected health risk.
- Limited research exists on the presence of these compounds in indoor environments.
Purpose of the Study:
- To investigate the presence of airborne macrocyclic trichothecene mycotoxins.
- To assess indoor environments with known Stachybotrys chartarum contamination.
Main Methods:
- Air sampling using SpinCon PAS 450-10 and modified Andersen GPS-1 PUF samplers.
- Analysis via macrocyclic trichothecene-specific enzyme-linked immunosorbent assay (ELISA).
- Specificity testing of ELISA against various fungal genera and indoor allergens.
Main Results:
- Detectable trichothecene concentrations were found in Stachybotrys-contaminated buildings.
- Toxin levels ranged from <10 to >1,300 pg/m3 and increased with sampling time and air disturbance.
- Control environments showed significantly lower airborne trichothecene levels (P < 0.001).
Conclusions:
- Airborne macrocyclic trichothecenes can be present in buildings contaminated with Stachybotrys.
- These findings are crucial for future indoor air quality investigations and risk assessments.

