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Projects

The key projects undertaken at Wal-yan Respiratory Research Centre.

Phage WA

Leading the fight against Antimicrobial Resistance (AMR) in Western Australia.

Our team

Meet the team at Phage WA, who are working to tackle antimicrobial resistance (AMR) through phage therapy. 

Phage WA Artificial Intelligence Team

Our team uses AI to quickly analyse large amounts of genetic data to help discover alternate medications and improve existing treatments.

Community Involvement

As part of our research development and planning we invite members of the community to work with us. Click here to find out how.

Contact Information

If you have any questions or would like more information about the Western Australian Epithelial Research Program (WAERP), please click here to access our contact details.

Early life exposure to an episode of extreme air pollution and lung function later in childhood: the Hazelwood early life follow-up (ELF) study

Children are particularly vulnerable to air pollution, but the effects of early life exposure to acute, high-intensity pollution on later lung function remain poorly understood. We assessed the association between prenatal or infant exposure to fire-related fine particulate matter (PM2.5) from a six-week coal mine fire and subsequent lung function. 

Can lung disease be averted by focusing on early-life inequities?

Shannon Simpson BMedSci (hons), PhD Head, Strong Beginnings Research, Co-head Foundations of Lung Disease 08 6319 1631 Shannon.simpson@thekids.org.au

Interactions between bacteria in the human nasopharynx: a scoping review

Emerging evidence indicates that interactions between bacteria shape the nasopharyngeal microbiome and influence respiratory health. This Review uses the systematic scoping methodology to summarise 88 studies including observational and experimental studies, identifying key interactions between bacteria that colonise the human nasopharynx. 

Lung function changes in children exposed to mine fire smoke in infancy

Chronic, low-intensity air pollution exposure has been consistently associated with reduced lung function throughout childhood. However, there is limited research regarding the implications of acute, high-intensity air pollution exposure. We aimed to determine whether there were any associations between early life exposure to such an episode and lung growth trajectories.