scispace - formally typeset
Open AccessJournal ArticleDOI

Indoor Mold, Toxigenic Fungi, and Stachybotrys chartarum: Infectious Disease Perspective

TLDR
The evidence regarding indoor mold exposure and mycotoxicosis is reviewed, with an emphasis on S. chartarum, and possible end-organ effects, including pulmonary, immunologic, neurologic, and oncologic disorders are examined.
Abstract
Damp buildings often have a moldy smell or obvious mold growth; some molds are human pathogens. This has caused concern regarding health effects of moldy indoor environments and has resulted in many studies of moisture- and mold-damaged buildings. Recently, there have been reports of severe illness as a result of indoor mold exposure, particularly due to Stachybotrys chartarum. While many authors describe a direct relationship between fungal contamination and illness, close examination of the literature reveals a confusing picture. Here, we review the evidence regarding indoor mold exposure and mycotoxicosis, with an emphasis on S. chartarum. We also examine possible end-organ effects, including pulmonary, immunologic, neurologic, and oncologic disorders. We discuss the Cleveland infant idiopathic pulmonary hemorrhage reports in detail, since they provided important impetus for concerns about Stachybotrys. Some valid concerns exist regarding the relationship between indoor mold exposure and human disease. Review of the literature reveals certain fungus-disease associations in humans, including ergotism (Claviceps species), alimentary toxic aleukia (Fusarium), and liver disease (Aspergillys). While many papers suggest a similar relationship between Stachybotrys and human disease, the studies nearly uniformly suffer from significant methodological flaws, making their findings inconclusive. As a result, we have not found well-substantiated supportive evidence of serious illness due to Stachybotrys exposure in the contemporary environment. To address issues of indoor mold-related illness, there is an urgent need for studies using objective markers of illness, relevant animal models, proper epidemiologic techniques, and examination of confounding factors.

read more

Citations
More filters
Book

Damp Indoor Spaces and Health

TL;DR: Damp indoor spaces and health , Damp indoor Spaces and health and health, کتابخانه دیجیتال جندی شاپور اهواز
Journal ArticleDOI

Trichothecenes in the environment: relevance to human health.

TL;DR: While there is general agreement that the diet represents an important source of human exposure to trichothecenes, risk assessment from non-dietary routes of exposure is complicated by the limited epidemiological data that are currently available.
Journal ArticleDOI

Sources of airborne microorganisms in the built environment

TL;DR: This work has identified eight major categories of sources of airborne bacteria, viruses, and fungi in the built environment: humans; pets; plants; plumbing systems; heating, ventilation, and air-conditioning systems; mold; dust resuspension; and the outdoor environment.
Journal Article

Functional somatic syndromes

References
More filters
Journal ArticleDOI

Mycoflora and natural occurrence of mycotoxins in tobacco from cigarettes in Egypt.

TL;DR: Based on biological assays (brine shrimp larvae and Bacillus megatherium test) and chemical analysis of chloroform extraction of tobacco (TLC and UV spectrophotometric), four samples had toxicity and four compounds of mycotoxins were detected namely; aflatoxins B1 & B2 (2 samples; 15.5 and 20.7 micrograms/kg), zearalenone (1 sample, 5.5micrograms) and T-
Journal ArticleDOI

Emergence and preservation of a chronically sick building

TL;DR: The results of this study suggest that psychosocial factors, among them organisational structures and communication patterns, should be given close attention in the management of sick building syndrome.
Journal ArticleDOI

The relationship between intra- and extra-cellular surfactant phospholipids in the lungs of rabbits and the effects of silica-induced lung injury.

TL;DR: The data suggest the existence of a size relationship between the intra- and the extra-cellular pools of surfactant, a relationship which implies a common regulatory mechanism that can be disturbed during pulmonary injury.
Related Papers (5)