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Catch Me if You Can: Reducing Infectious Disease Through Better Indoor Air Quality and Biosurveillance
Kenneth B Yeh, Benjamin D Anderson1, Elaine B Jarvis
1Kenneth B. Yeh, MS, is Senior Director and Research Fellow, MRIGlobal, Gaithersburg, MD, and Head of Biodefense Partnerships, SafeTraces, Inc., Pleasanton, CA. Benjamin D. Anderson, MPH, PhD, is an Assistant Professor, Department of Environmental and Global Health, and Associate Director, One Health Center of Excellence; both in the College of Public Health and Health Professions, University of Florida, Gainesville, FL. Elaine B. Jarvis, MS, is a Staff Scientist, MRIGlobal, Gaithersburg, MD. Meng Kong, PhD, is Research Lead, Well Living Lab, Delos Living LLC, Rochester, MN, and Principal Engineer, GTI Energy, Des Plaines, IL. Gene G. Olinger, PhD, MBA, is a Distinguished Research Fellow, MRIGlobal, Gaithersburg, MD, and a Professor, Department of Microbiology and Immunology, University of Texas Medical Branch, Galveston, TX. Falgunee K. Parekh, MPH, PhD, is Principal Scientist, EpiPointe, Cary, NC. Ami Patel, PhD, RBP (ABSA), is a Senior Safety Biosafety Surety Officer; MRIGlobal, Gaithersburg, MD. Bradly G. Setser, MS, is a Senior Scientist, JRAD, Stafford, VA. Jacob L. Swett, PhD, is Executive Director, Blueprint Biosecurity, Washington, DC. Wai-Ling Mui, MS, is Principal Consultant CBRN Defense and Global Health Security, Synertex, Reston, VA.
Abstract:
Infectious disease transmission continues to be an unmet challenge. This is in part due to the air that circulates within our indoor environments, which can contain a myriad of potentially pathogenic bacteria, fungi, mold, and viruses as well as various allergens. This issue was highlighted during the COVID-19 pandemic, due to the highly infectious nature of SARS-CoV-2 and the public measures taken to limit airborne transmission of the pathogen through quarantining, social distancing, and maskwearing. The broad disruption in normal activities and interactions within these indoor environments prompted rethinking how indoor air quality can be improved to further mitigate infectious disease transmission. There is opportunity to accomplish health security and biosurveillance for protecting critical building infrastructures by incorporating existing and new measures for detection and control of microbial burden. Integrating central building controls and systems for heating, ventilation, and air conditioning with ongoing detection of environmental flora and microbes can help identify emerging pathogens and endemic biothreats such as SARS-CoV-2 and Legionella, respectively. This effort, however, will require (1) synergistic funding from 1 or more government agencies and multiple commercial entities to maintain habitable indoor environments and (2) environmental factors on infectious disease emergence and transmission to improve health outcomes and overall national security. In this commentary, we illustrate the importance of indoor air quality through case studies of infectious pathogens, their interaction with indoor environments, and measures to curtail the airborne transmission of respiratory disease.
Insights
Improving indoor air quality is crucial for public health and national security. Integrating advanced detection and control systems can mitigate the spread of airborne pathogens like SARS-CoV-2.
Area of Science:
- Environmental Health
- Infectious Disease Epidemiology
- Building Science
Background:
- Indoor air quality significantly impacts health due to airborne pathogens (bacteria, viruses, fungi) and allergens.
- The COVID-19 pandemic highlighted the risks of airborne transmission of infectious agents like SARS-CoV-2 in indoor environments.
- Current measures for infectious disease control often overlook the role of indoor air quality.
Purpose of the Study:
- To emphasize the critical role of indoor air quality in controlling infectious disease transmission.
- To advocate for integrating biosurveillance and microbial control within building systems.
- To highlight the need for enhanced health security through improved indoor environments.
Main Methods:
- Review of case studies on infectious pathogens and their interaction with indoor environments.
- Discussion of existing and novel measures for detecting and controlling microbial burden.
- Exploration of integrating heating, ventilation, and air conditioning (HVAC) systems with environmental monitoring.
Main Results:
- Indoor environments can harbor and facilitate the transmission of diverse pathogenic microbes.
- Integrated building systems offer a pathway for proactive detection and mitigation of airborne threats.
- Synergistic funding and research are essential for advancing indoor air quality for health and security.
Conclusions:
- Improving indoor air quality is a vital strategy for mitigating infectious disease spread and enhancing national security.
- Technological integration in buildings can create healthier and safer indoor spaces.
- Further research and investment are needed to address the challenges of airborne pathogen transmission.
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