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Updated: Jun 27, 2026

Collection and Extraction of Occupational Air Samples for Analysis of Fungal DNA
Published on: May 2, 2018
Assessment of the aerosolization potential for fungal spores in moldy homes
S K Sivasubramani1, R T Niemeier, T Reponen
1Center for Health-Related Aerosol Studies, Department of Environmental Health, University of Cincinnati, Cincinnati, OH 45267-0056, USA. sergey.grinshpun@uc.edu
Unlabelled:
The airborne fungal concentration measured with air samplers during specific time intervals may not adequately represent the indoor air quality because of the sporadic nature of spore release from sources. The conventional source evaluation (e.g. swab and tape sampling) characterizes the mold source but does not relate to the fraction of spores that can be aerosolized from a contaminated material. As an alternative to these methods, we have recently developed and laboratory-tested a novel Fungal Spore Source Strength Tester (FSSST). It allows assessing the potential of aerosolization of fungal spores from contaminated surfaces under the most favorable release conditions. In this study, the FSSST was used to characterize the release of spores from four building materials in mold-problem homes. The spores of different species were efficiently aerosolized by the FSSST, exhibiting a total spore release rate ranging approximately from 10(2) to 10(3) cm2/min. For all tested materials, <2% of the spores on the contaminated surface were released during the tests. The airborne spore concentration estimated from the release rate data was found in most cases to be significantly greater than the concentration actually measured in these environments with simultaneous air sampling. The results suggest that the FSSST can be used for the assessment of maximum potential exposure to airborne spores released from identified sources in homes.
Practical Implications:
A recently developed FSSST was found to be suitable to measure the aerosolization potential of indoor fungal sources at the most favorable release conditions. The FSSST generates the data that allows assessing the strength of mold sources in homes with respect to their maximum ability to contaminate indoor air with fungi. The novel approach bridges two conventional methods, the air sampling and the direct source evaluation (e.g. swab sampling), thus providing a better representation of the airborne fungal exposure than these methods individually. The device prototype can be used for evaluating the effectiveness of environmental interventions by taking samples before and after the intervention. As a broader application, the FSSST can be utilized for assessing the release of various hazardous biological and non-biological particles from contaminated surfaces.
Insights
A new Fungal Spore Source Strength Tester (FSSST) effectively measures mold's potential to release airborne spores. This tool provides a better assessment of indoor fungal exposure than traditional methods.
Area of Science:
- Environmental Science
- Mycology
- Indoor Air Quality
Background:
- Airborne fungal concentrations may not accurately reflect indoor air quality due to sporadic spore release.
- Conventional methods like swab sampling assess mold but not aerosolization potential.
- A novel Fungal Spore Source Strength Tester (FSSST) was developed to evaluate spore release potential.
Purpose of the Study:
- To characterize fungal spore release from building materials using the FSSST.
- To compare FSSST-derived airborne spore concentrations with actual air sampling measurements.
- To assess the FSSST's utility in evaluating indoor fungal exposure and intervention effectiveness.
Main Methods:
- The FSSST was used to test spore aerosolization from four building materials in homes with mold problems.
- Spore release rates were measured under optimal release conditions.
- Airborne spore concentrations were estimated from release rate data and compared with simultaneous air sampling.
Main Results:
- The FSSST efficiently aerosolized spores from different species, with release rates from 10^2 to 10^3 cm²/min.
- Less than 2% of surface spores were released during testing for all materials.
- Estimated airborne spore concentrations often exceeded those measured by air sampling.
Conclusions:
- The FSSST is suitable for measuring the aerosolization potential of indoor fungal sources under optimal conditions.
- The FSSST provides a more accurate representation of airborne fungal exposure by bridging air sampling and source evaluation.
- The FSSST can be used to assess maximum potential exposure, evaluate interventions, and analyze the release of other hazardous particles.

