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Collection and Extraction of Occupational Air Samples for Analysis of Fungal DNA
Published on: May 2, 2018
Misalignment between Clinical Mold Antigen Extracts and Airborne Molds Found in Water-damaged Homes
William M Sothern1,2, Sarah L O'Beirne3, Michael Berg4
1Graduate School of Public Health and Health Policy, City University of New York, New York, New York.
Abstract:
Rationale: Epidemiologic studies have demonstrated that exposure to molds and other fungi can play a role in a variety of allergic and pulmonary diseases in susceptible individuals. Species-specific mold antigen extracts are used in the clinical evaluation of suspected mold-related conditions; however, alignment between these extracts and the species of molds identified in the indoor environment of water-damaged homes has not been rigorously evaluated. Objectives: To identify the predominant genera and species of mold in the air of homes with water damage, mold growth, and/or occupants with respiratory complaints (complaint homes), and to assess their alignment with the mold antigen extracts used in clinical practice. Methods: The genera and species of molds identified in culture-type outdoor and indoor air samples collected from complaint homes throughout the United States and Canada from 2002 to 2017 were examined. Mold antigen extracts available and utilized for skin and serum testing in clinical practice were assessed, and alignment between these data were evaluated. Results: Culture data from 24,455 indoor air samples from 7,547 complaint homes and 29,493 outdoor samples were evaluated. Mean exposure values (colony-forming units [cfu]/m3) were calculated for each genus and species and indoor versus outdoor values were compared. Penicillium was the predominant genus identified in water-damaged homes, with a mean exposure (233.3 cfu/m3) 2.9 times higher than that of the Aspergillus genus (81.4 cfu/m3). Five Penicillium (P. aurantiogriseum, P. brevicompactum, P. citrinum, P. crustosum, and P. variabile) and three Aspergillus (A. versicolor, A. sydowii, and A. niger) species were identified as the predominant indoor water-damage-related fungi. However, none of these Penicillium species and only one of the Aspergillus species is currently available as an antigen extract for use in skin testing or serum testing panels. Conclusions: Significant misalignment exists between the currently available mold antigen extracts and the predominant species of molds found in water-damaged homes. Improving alignment has the potential to enhance diagnosis of mold-related diseases, including allergic asthma and hypersensitivity pneumonitis and to improve patient outcomes via interventions, including antigen avoidance through building remediation and occupant relocation, consistent with the findings of a recent American Thoracic Society Workshop Report.
Insights
Mold testing in homes reveals a significant gap between common indoor mold species and available clinical diagnostic tools. Improving this alignment is crucial for diagnosing mold-related respiratory illnesses and improving patient outcomes.
Area of Science:
- Environmental Science
- Mycology
- Clinical Allergy and Immunology
Background:
- Epidemiologic studies link mold exposure to allergic and pulmonary diseases.
- Clinical evaluation of mold-related conditions relies on species-specific antigen extracts.
- The alignment between available mold extracts and indoor mold species in water-damaged homes is not well-established.
Purpose of the Study:
- Identify predominant mold genera and species in air samples from water-damaged homes with respiratory complaints.
- Assess the alignment between identified indoor mold species and currently used clinical mold antigen extracts.
Main Methods:
- Analyzed culture-type indoor and outdoor air samples from 7,547 homes across the US and Canada (2002-2017).
- Quantified mold exposure levels (colony-forming units/m³).
- Assessed the availability of mold antigen extracts for skin and serum testing.
Main Results:
- Penicillium (mean 233.3 cfu/m³) was the predominant indoor genus, followed by Aspergillus (mean 81.4 cfu/m³).
- Key indoor species included five Penicillium and three Aspergillus species.
- None of the identified Penicillium species and only one Aspergillus species are available as clinical antigen extracts.
Conclusions:
- A significant misalignment exists between common indoor mold species in water-damaged homes and available clinical antigen extracts.
- Improving this alignment could enhance the diagnosis of mold-related diseases like allergic asthma and hypersensitivity pneumonitis.
- Better diagnostic alignment may improve patient outcomes through targeted interventions such as building remediation and relocation.
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