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Adverse human health effects associated with molds in the indoor environment
Abstract:
Molds are common and important allergens. About 5% of individuals are predicted to have some allergic airway symptoms from molds over their lifetime. However, it should be remembered that molds are not dominant allergens and that the outdoor molds, rather than indoor ones, are the most important. For almost all allergic individuals, the reactions will be limited to rhinitis or asthma; sinusitis may occur secondarily due to obstruction. Rarely do sensitized individuals develop uncommon conditions such as ABPA or AFS. To reduce the risk of developing or exacerbating allergies, mold should not be allowed to grow unchecked indoors. When mold colonization is discovered in the home, school, or office, it should be remediated after the source of the moisture that supports its growth is identified and eliminated. Authoritative guidelines for mold remediation are available. Fungi are rarely significant pathogens for humans. Superficial fungal infections of the skin and nails are relatively common in normal individuals, but those infections are readily treated and generally resolve without complication. Fungal infections of deeper tissues are rare and in general are limited to persons with severely impaired immune systems. The leading pathogenic fungi for persons with nonimpaired immune function, Blastomyces, Coccidioides, Cryptococcus, and Histoplasma, may find their way indoors with outdoor air but normally do not grow or propagate indoors. Due to the ubiquity of fungi in the environment, it is not possible to prevent immunecompromised individuals from being exposed to molds and fungi outside the confines of hospital isolation units. Some molds that propagate indoors may under some conditions produce mycotoxins that can adversely affect living cells and organisms by a variety of mechanisms. Adverse effects of molds and mycotoxins have been recognized for centuries following ingestion of contaminated foods. Occupational diseases are also recognized in association with inhalation exposure to fungi, bacteria, and other organic matter, usually in industrial or agricultural settings. Molds growing indoors are believed by some to cause building-related symptoms. Despite a voluminous literature on the subject, the causal association remains weak and unproven, particularly with respect to causation by mycotoxins. One mold in particular, Stachybotrys chartarum, is blamed for a diverse array of maladies when it is found indoors. Despite its well-known ability to produce mycotoxins under appropriate growth conditions, years of intensive study have failed to establish exposure to S. chartarum in home, school, or office environments as a cause of adverse human health effects. Levels of exposure in the indoor environment, dose-response data in animals, and dose-rate considerations suggest that delivery by the inhalation route of a toxic dose of mycotoxins in the indoor environment is highly unlikely at best, even for the hypothetically most vulnerable subpopulations. Mold spores are present in all indoor environments and cannot be eliminated from them. Normal building materials and furnishings provide ample nutrition for many species of molds, but they can grow and amplify indoors only when there is an adequate supply of moisture. Where mold grows indoors there is an inappropriate source of water that must be corrected before remediation of the mold colonization can succeed. Mold growth in the home, school, or office environment should not be tolerated because mold physically destroys the building materials on which it grows, mold growth is unsightly and may produce offensive odors, and mold is likely to sensitize and produce allergic responses in allergic individuals. Except for persons with severely impaired immune systems, indoor mold is not a source of fungal infections. Current scientific evidence does not support the proposition that human health has been adversely affected by inhaled mycotoxins in home, school, or office environments.
Insights
Molds are common allergens, primarily causing allergic airway symptoms like rhinitis and asthma. Indoor mold growth should be controlled by addressing moisture sources to prevent health issues and structural damage.
Area of Science:
- Environmental Health
- Allergology
- Mycology
Background:
- Molds are ubiquitous environmental fungi, posing risks as allergens and, rarely, pathogens.
- While outdoor molds are more significant allergens, indoor mold growth can trigger allergic airway responses, predominantly rhinitis and asthma.
- Fungal infections are rare in healthy individuals, typically affecting those with compromised immune systems.
Purpose of the Study:
- To evaluate the health effects of indoor mold exposure, including allergic reactions and potential toxicity from mycotoxins.
- To clarify the role of indoor molds in building-related symptoms and differentiate between allergic responses and pathogenic infections.
- To provide guidance on mold remediation and prevention strategies in indoor environments.
Main Methods:
- Review of existing scientific literature on mold allergens, mycotoxins, and associated health effects.
- Analysis of epidemiological data and case studies related to indoor mold exposure.
- Evaluation of toxicological studies on molds and mycotoxins, including dose-response relationships.
Main Results:
- Indoor molds are significant allergens, causing allergic rhinitis and asthma in susceptible individuals.
- Pathogenic fungal infections from indoor molds are rare in healthy populations.
- Evidence linking inhaled mycotoxins from indoor molds to adverse health effects, including building-related symptoms, remains weak and unproven.
- Stachybotrys chartarum, despite its mycotoxin-producing potential, has not been definitively linked to adverse health outcomes in indoor environments.
Conclusions:
- Controlling indoor mold growth by eliminating moisture sources is crucial for preventing allergic reactions and structural damage.
- While molds can cause allergies, they are not typically significant pathogens for healthy individuals.
- Current scientific evidence does not support claims of widespread adverse health effects from inhaled mycotoxins in indoor environments.