Indirect Immunodetection of Fungal Fragments by Field Emission Scanning Electron Microscopy
Komlavi Anani Afanou1, Anne Straumfors1, Asbjørn Skogstad1
1National Institute of Occupational Health, Department of Chemical and Biological Work Environment, Oslo, Norway.
Abstract:
Submicronic fungal fragments have been observed in in vitro aerosolization experiments. The occurrence of these particles has therefore been suggested to contribute to respiratory health problems observed in mold-contaminated indoor environments. However, the role of submicronic fragments in exacerbating adverse health effects has remained unclear due to limitations associated with detection methods. In the present study, we report the development of an indirect immunodetection assay that utilizes chicken polyclonal antibodies developed against spores from Aspergillus versicolor and high-resolution field emission scanning electron microscopy (FESEM). Immunolabeling was performed with A. versicolor fragments immobilized and fixed onto poly-l-lysine-coated polycarbonate filters. Ninety percent of submicronic fragments and 1- to 2-μm fragments, compared to 100% of >2-μm fragments generated from pure freeze-dried mycelial fragments of A. versicolor, were positively labeled. In proof-of-concept experiments, air samples collected from moldy indoor environments were evaluated using the immunolabeling technique. Our results indicated that 13% of the total collected particles were derived from fungi. This fraction comprises 79% of the fragments that were detected by immunolabeling and 21% of the spore particles that were morphologically identified. The methods reported in this study enable the enumeration of fungal particles, including submicronic fragments, in a complex heterogeneous environmental sample.
Insights
Researchers developed a new assay to detect tiny fungal fragments, which may cause respiratory issues. This method helps identify mold particles in indoor air, improving our understanding of indoor air quality and health risks.
Area of Science:
- Environmental Science
- Microbiology
- Immunology
Background:
- Submicronic fungal fragments are implicated in respiratory problems in mold-contaminated environments.
- Previous detection methods limited understanding of their role in adverse health effects.
Purpose of the Study:
- To develop an indirect immunodetection assay for enumerating fungal particles, including submicronic fragments.
- To utilize high-resolution field emission scanning electron microscopy (FESEM) for enhanced detection.
Main Methods:
- Developed an indirect immunodetection assay using chicken polyclonal antibodies against Aspergillus versicolor spores.
- Employed FESEM for high-resolution imaging and immunolabeling of fungal fragments.
- Tested the assay on air samples from mold-contaminated indoor environments.
Main Results:
- The immunodetection assay successfully labeled 90% of submicronic and 1-2 μm fungal fragments.
- In environmental samples, fungi constituted 13% of total particles, with fragments being a significant fraction.
- The method enabled the enumeration of fungal particles, including submicronic fragments, in complex samples.
Conclusions:
- The developed immunodetection assay is effective for detecting and enumerating fungal particles, including challenging submicronic fragments.
- This advancement aids in assessing indoor air quality and understanding the health impacts of mold exposure.
- The study provides a crucial tool for environmental microbiology and public health research.
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