If youâve spent time outside in virtually any part of Canada this summer, youâve likely been choked by wildfire smoke. But just how harmful is that smoke? Is it similar to inhaling, say, second-hand cigarette smoke, or is there something even more sinister wafting in those fumes? Researchers are trying to find out.
âYouâd think fire is going to kill everything thatâs alive, but ⊠thereâs pretty reasonable scientific evidence that suggests microbes could live.”
Christina Thornton,
University of Calgary
Christina Thornton is one part of a multipronged series of research projects bringing together the University of Calgary, University of Alberta (U of A), and Queenâs University to study the microbiomeâthat’s millions of tiny organisms like bacteria, viruses, and fungi that live together in a specific habitatâthat exists within wildfire smoke. A microbiologist by trade and practicing respirologist with the Cumming School of Medicine, Thorntonâs project is part of an emerging field called pyroaerobiology. Researchers in the field are trying to understand what microbes and chemicals exist in the combusted smoke lingering in our atmosphere.
Thorntonâs project, which she leads collaboratively with the U of Aâs Ran Zhao, and which builds upon a prior project with Zhao and Queenâs Universityâs Paul Kubes, recently received $250,000 from the federal governmentâs New Frontiers in Research Fund (NFRF) tied to understanding the makeup of the wildfire smoke that now blankets much of the planet each summer in hopes that more effective medical treatment can be developed. That funding comes on the heels of a prior, $2-million grant from the Canadian Institute of Health Research for Thorntonâs work with Kubes.
âAt the end, what we hope that weâll have is a clear workflow standard operating procedure, as well as a sort of fingerprint of what wildfire smoke looks like both in terms of chemical and microbial composition,â Thornton said.
Inspired by disaster
Thornton and her colleagueâs project was conceived three years ago during the 2023 wildfires in Western Canada. It was the most severe fire season in living memory for Canada, and it caused the three academics to wonder how dangerous the smoke they were inhaling was.
âWe know wildfires are bad: clearly there are chemicals and particles ⊠we are breathing in. But do we know if thereâs anything else weâre breathing in?â
As it turns out, thereâs a lot more than just ash, soot, and PM2.5â the ultra fine particulate matter that gets caught in our lungsâin that smoke. According to Thornton, smoke composition from wildfires can include things like fungal spores and microbial agents that havenât historically existed in aerosol form, meaning thereâs no basis for what impacts they might have when inhaled.
âYouâd think fire is going to kill everything thatâs alive, but ⊠thereâs pretty reasonable scientific evidence that suggests microbes could live. And, what happens is when theyâre exposed to these extremes of temperature, they can make spores, whether bacterial or fungal, and those spores can be dispersed and potentially inhaled,â Thornton said.
That carries all manner of potential implications, from associations with cardiovascular disease and stroke, to exposure to potentially immune-system-influencing antigens, according to Thornton.
âMicrobes carry their own DNA,â Thornton said. âAntibiotic-resistant genes are present in these bugs. We donât know what those are doing. If theyâre carrying antimicrobial resistance and weâre breathing them in, that may have implications for how we treat patients.â
RELATED: How four Edmonton startups are collaborating to fight wildfires
Another study, out of the US, found associations between wildfire incidents and occurrences of respiratory fungal infections.
To find those microbes and chemicals, the team uses high-volumetric air samplers to capture wildfire smoke, analyze those samples, and develop microbial communities that can be grown and studied. Theyâve also made use of the Government of Canadaâs burn lab, located at the Northern Forestry Centre in Edmonton, to burn natural components in a controlled setting and measure the outcome.
A growing field of study
Thorntonâs work is part of a growing field of research surrounding wildfires and their implications on human health. At U of A, in the Faculty of Engineering, assistant professor Haoran Yu is studying the ways airborne particulates enter indoor spaces and move through the air, as well as the chemical composition of smoke. Further east, the University of Manitoba is preparing to open the AirSAFE Lab, a multidisciplinary research centre on the health impacts of wildfire smoke. That centre is slated to open later this year.
Itâs a welcome effort, because, as Thornton says, the impacts of wildfire smoke are widespread, expensive, and not going away anytime soon.
âWeâre already in a strained healthcare system ⊠it doesn’t take much to tip things over,â she said. â[Wildfire smoke] has healthcare costs, burdens on the system, increased resources, and we donât have clear recommendations for what to do or clear guidance for what to do.â
BetaKitâs Prairies reporting is funded in part by YEGAF, a not-for-profit dedicated to amplifying business stories in Alberta.
Image courtesy Open Journalism Network. Photo by InOldNews/Katherine KY Cheng.

