← Explorer/Network

Public health and economic impact of dampness and mold

Mudarri D, Fisk WJ2007Indoor AirJournal Article
10.1111/j.1600-0668.2007.00474.xPubMedFree full text
Respiratory/Sinus
Indoor Mold (Stachybotrys, Aspergillus, etc.)Water-Damaged Buildings (WDB)

Abstract

The public health risk and economic impact of dampness and mold exposures was assessed using current asthma as a health endpoint. Individual risk of current asthma from exposure to dampness and mold in homes from Fisk et al. (2007), and asthma risks calculated from additional studies that reported the prevalence of dampness and mold in homes were used to estimate the proportion of U.S. current asthma cases that are attributable to dampness and mold exposure at 21% (95% confidence internal 12-29%). An examination of the literature covering dampness and mold in schools, offices, and institutional buildings, which is summarized in the appendix, suggests that risks from exposure in these buildings are similar to risks from exposures in homes. Of the 21.8 million people reported to have asthma in the U.S., approximately 4.6 (2.7-6.3) million cases are estimated to be attributable to dampness and mold exposure in the home. Estimates of the national cost of asthma from two prior studies were updated to 2004 and used to estimate the economic impact of dampness and mold exposures. By applying the attributable fraction to the updated national annual cost of asthma, the national annual cost of asthma that is attributable to dampness and mold exposure in the home is estimated to be $3.5 billion ($2.1 - 4.8 billion). Analysis indicates that exposure to dampness and mold in buildings poses significant public health and economic risks in the U.S. These findings are compatible with public policies and programs that help control moisture and mold in buildings. PRACTICAL IMPLICATIONS There is a need to control moisture in both new and existing construction because of the significant health consequences that can result from dampness and mold. This paper demonstrates that dampness and mold in buildings is a significant public health problem with substantial economic impact.

Cited By (21)

  • The biocontaminants and complexity of damp indoor spaces: more than what meets the eyesToxicology and Industrial Health · 2009
  • A water-damaged home and health of occupants: a case studyJournal of Environmental and Public Health · 2012
  • NIOSH Dampness and Mold Assessment Tool (DMAT): Documentation and Data Analysis of Dampness and Mold-Related Damage in Buildings and Its ApplicationBuildings · 2022
  • Stachybotrys chartarum, Trichothecene Mycotoxins, and Damp Building–Related Illness: New Insights into a Public Health EnigmaToxicological Sciences · 2008
  • Molds and mycotoxins in dust from water-damaged homes in New Orleans after hurricane KatrinaIndoor Air · 2009
  • Moisture damage and fungal contamination in buildings are a massive health threat - a surgeon's perspectiveCentral European Journal of Public Health · 2023
  • Mold Exposure and Mold-Associated Diseases- Does the Public Healthcare System Protect Us? A Comment

Related Papers

  • Misalignment between Clinical Mold Antigen Extracts and Airborne Molds Found in Water-damaged HomesAnnals of the American Thoracic Society · 2021 · 3 shared tags
  • Dampness, mould, onset and remission of adult respiratory symptoms, asthma and rhinitisEuropean Respiratory Journal · 2019 · 3 shared tags
  • Microbial Air Quality in the Built Environment—Case Study of Darvas-La Roche Heritage Museum House, Oradea, RomaniaBuildings · 2023 · 3 shared tags
  • Mold inhalation causes innate immune activation, neural, cognitive and emotional dysfunctionBrain Behavior and Immunity · 2020 · 3 shared tags
  • Going over Fungal Allergy: Alternaria alternata and Its AllergensJournal of Fungi · 2023 · 3 shared tags
  • Bacteria in a water-damaged building: associations of actinomycetes and non-tuberculous mycobacteria with respiratory health in occupantsIndoor Air · 2017 · 3 shared tags
Journal of Public Health Issues and Practices · 2025
  • Research on Thermal Insulation Performance and Impact on Indoor Air Quality of Cellulose-Based Thermal Insulation MaterialsMaterials · 2023
  • A Predictive Model for the Growth Diameter of Mold under Different Temperatures and Relative Humidities in Indoor EnvironmentsBuildings · 2024
  • Influence of TiO2 Nanoparticles on the Resistance of Cementitious Composite Materials to the Action of Fungal SpeciesMaterials · 2021
  • Optimization of Aspergillus versicolor Culture and Aerosolization in a Murine Model of Inhalational Fungal ExposureJournal of Fungi · 2023
  • Assessing allergenic fungi in house dust by floor wipe sampling and quantitative PCRIndoor Air · 2011
  • Assessment of Mold-Specific Volatile Organic Compounds and Molds Using Sorbent Tubes and a CDC/NIOSH-Developed Tool in Homes Affected by Hurricane IanApplied Sciences · 2025
  • Exposure Risks from Microbiological Hazards in Buildings and Their Control—A Rapid Review of the EvidenceAtmosphere · 2025
  • Respiratory and Allergic Health Effects of Dampness, Mold, and Dampness-Related Agents: A Review of the Epidemiologic EvidenceEnvironmental Health Perspectives · 2011
  • A Review of the Mechanism of Injury and Treatment Approaches for Illness Resulting from Exposure to Water‐Damaged Buildings, Mold, and MycotoxinsThe Scientific World JOURNAL · 2013
  • Observation‐based metrics for residential dampness and mold with dose–response relationships to health: A reviewIndoor Air · 2016
  • Procedures to Assist Health Care Providers to Determine When Home Assessments for Potential Mold Exposure Are WarrantedThe Journal of Allergy and Clinical Immunology In Practice · 2016
  • Indoor dampness and mould health effects – ongoing questions on microbial exposures and allergic versus nonallergic mechanismsClinical & Experimental Allergy · 2015
  • Molecular profiling of fungal communities in moisture damaged buildings before and after remediation - a comparison of culture-dependent and culture-independent methodsBMC Microbiology · 2011
  • Changes in respiratory and non-respiratory symptoms in occupants of a large office building over a period of moisture damage remediation attemptsPLoS ONE · 2018
  • References (8)

    • Building-related respiratory symptoms can be predicted with semi-quantitative indices of exposure to dampness and moldIndoor Air · 2004
    • Respiratory Morbidity in Office Workers in a Water-Damaged BuildingEnvironmental Health Perspectives · 2005
    • Effect of ultraviolet germicidal lights installed in office ventilation systems on worker’s health and wellbeing: double-blind multiple crossover trialThe Lancet · 2003
    • Dampness and airway inflammation and systemic symptoms in office building workersArchives of Environmental Health An International Journal · 1999
    • Fungal and endotoxin measurements in dust associated with respiratory symptoms in a water-damaged office buildingIndoor Air · 2006
    • Respiratory morbidity among children following renovation of a water-damaged schoolArchives of Environmental Health An International Journal · 2000
    • Aeroallergens and work-related respiratory symptoms among office workersJournal of Allergy and Clinical Immunology · 1998
    • Molds in floor dust and building-related symptoms among adolescent school children: a problem for boys only?Indoor Air · 2005