Scientists have shown that a naturally occurring virus can dismantle complex bacterial communities responsible for severe gum disease, offering a potential alternative to traditional antibiotics.
In the first study to demonstrate this effect, La Trobe University researchers found the FNU1 virus selectively attacked Fusobacterium polymorphum, a bacterial species that helps other disease-causing bacteria to stick together and thrive.
The virus reduced total bacterial levels by 94 per cent, leaving only about six per cent of the original disease-causing plaque intact.
Despite targeting just one bacterial species, the treatment dramatically reduced the size and density of the plaque, with levels of three other bacteria linked to gum disease falling by more than 85 per cent.
Dr Mwila Kabwe, lead author and Post Doctoral Research Fellow at La Trobe’s Holsworth Biomedical Research Centre, said the findings were important given gum disease affects more than half the world’s population and remains a leading cause of tooth loss.
The research focused on bacteriophages or phages, viruses that infect bacteria but are harmless to humans.
“Current treatments for gum disease don’t directly target the bacterial imbalance that drives the disease, and the dense layers of bacteria that form around teeth can be resistant to antibiotics,” Dr Kabwe said.
“By targeting one of the key bacteria that holds these disease-causing communities together, we were able to destabilise the entire plaque community.
“The findings suggest phages could offer a more precise way to treat gum disease while preserving healthy bacteria.”

While the laboratory findings are promising, further research is needed before phage-based treatments could be used in dental practice.
The study forms part of Dr Kabwe’s early career-research investigating how phages could be used to target harmful bacteria linked to oral disease and other chronic health conditions.
PHOTO (L-R): Siti Saleha Binte Mohamed Yakob Adil, Dr Mwila Kabwe and Dr Syeda Areeba Rehan.