The scientists at Aston University said lab tests had shown their bioactive glass particles combined with gallium had a 99% success rate at eliminating cancerous cells, the BBC reports.
It can also regenerate diseased bones, they claim.
The team is now calling for more funding in order to conduct trials.
The research was led by Professor Richard Martin, based at the university’s College of Engineering and Physical Sciences, who said there was an urgent need for improved treatment options.
“We believe that our findings could lead to a treatment that is more effective and localized, reducing side effects, and can even regenerate diseased bones,” he said.
In laboratory tests 99% of osteosarcoma cells were destroyed, but non-cancerous human bone cells were not.
The researchers said osteosarcoma was the mostly commonly occurring primary bone cancer and despite the use of chemotherapy and surgery to remove tumors, survival rates had not significantly improved since the 1970s.
Survival rates are substantially reduced for patients who have a recurrence and primary bone cancer patients are also more susceptible to bone fractures, they added.
The new treatment was developed by rapidly cooling very hot molten liquids to form glass, which was then ground and sieved into tiny particles that can be used for treatment.
"The safety and effectiveness of these biomaterials will need to be tested further, but the initial results are really promising," the researchers note.
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