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Updated: Sep 3, 2025

Collection and Extraction of Occupational Air Samples for Analysis of Fungal DNA
Published on: May 2, 2018
Analysis of mold and mycotoxins in naturally infested indoor building materials
Viktoria Lindemann1, Tim Schleiner2, Ulrich Maier2
1Institute of Food Chemistry, Westfälische Wilhelms-Universität Münster, Corrensstr. 45, 48149, Münster, Germany.
Abstract:
Health issues of residents of mold-infested housing are reported on a regular basis, and reasons for the arising impairments can be manifold. One possible cause are the toxic secondary metabolite produced by indoor microfungi (mycotoxins). To enable a more thorough characterization of the exposure to mycotoxins in indoor environments, data on occurrence and quantities of mycotoxins is essential. In the presented study, 51 naturally mold-infested building material samples were analyzed applying a previously developed method based on ultra-high performance liquid chromatography (UHPLC) separation in combination with triple-quadrupole mass spectrometry (TQMS) detection. A total of 38 secondary metabolites derived from different indoor mold genera like Aspergillus, Fusarium, Penicillium, and Stachybotrys were analyzed, of which 16 were detectable in 28 samples. As both the spectrum of target analytes and the investigated sample matrices showed high chemical varieties, an alternative calibration approach was applied complementary to identify potentially emerging matrix effects during ionization and mass spectrometric detection. Overall, strong alterations of analyte signals were rare, and compensation of considerable matrix suppression/enhancement only had to be performed for certain samples. Besides mycotoxin determination and quantification, the presence of 18 different mold species was confirmed applying microbiological approaches in combination with macro- and microscopic identification according to DIN ISO 16000-17:2010-06. These results additionally highlight the diversity of mycotoxins potentially arising in indoor environments and leads to the assumption that indoor mycotoxin exposure stays an emerging topic of research, which has only just commenced.
Insights
Indoor mold can produce harmful mycotoxins. This study detected 16 different mycotoxins in 28 of 51 mold-infested building material samples, highlighting indoor mycotoxin exposure as an emerging research area.
Area of Science:
- Environmental Science
- Toxicology
- Mycology
Background:
- Mold-infested housing is linked to health issues.
- Mycotoxins, toxic secondary metabolites from indoor microfungi, are a potential cause.
- Characterizing mycotoxin exposure requires data on occurrence and quantities.
Purpose of the Study:
- To analyze the occurrence and quantities of mycotoxins in mold-infested building materials.
- To identify specific mold species present in the samples.
Main Methods:
- Ultra-high performance liquid chromatography (UHPLC) coupled with triple-quadrupole mass spectrometry (TQMS) was used for mycotoxin analysis.
- An alternative calibration approach was employed to manage matrix effects.
- Microbiological and microscopic identification (DIN ISO 16000-17:2010-06) confirmed mold species.
Main Results:
- Out of 51 samples, 28 contained detectable mycotoxins.
- 16 different mycotoxins from genera including Aspergillus, Fusarium, Penicillium, and Stachybotrys were analyzed.
- Significant matrix effects requiring compensation were rare.
Conclusions:
- The study confirms the diversity of mycotoxins in indoor environments.
- Indoor mycotoxin exposure is a significant and emerging area for research.
- Accurate quantification of mycotoxins in building materials is feasible with advanced analytical techniques.
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