Deploying PURIne adjuvants to improve the Fight against StaphYlococcus aureus AMR (PURIFY AMR)
In plain English
AI plain-English summaryPurine nucleosides—molecules that cells use to build DNA—can re-sensitise drug-resistant MRSA bacteria to antibiotics that no longer work against them. This matters because infections like MRSA, which cause wound infections, bone infections, heart valve infections, and lung infections in people with cystic fibrosis, are becoming harder to treat. Standard antibiotics such as beta-lactams (penicillin-type drugs) and trimethoprim-sulfamethoxazole (TMP-SMX) are losing their effectiveness. The researchers discovered that purine nucleosides work by lowering thymidine levels inside bacterial cells, which disrupts the bacteria’s ability to resist these drugs. This opens a new route to overcome antimicrobial resistance without inventing entirely new antibiotics. If this succeeds, the impact would be practical and immediate: existing, cheap, licenced antibiotics could be used again against stubborn infections. Doctors could combine TMP-SMX or 5-fluorouracil with purines, alone or alongside beta-lactams, to treat MRSA and other resistant pathogens. The project will also uncover the precise mechanisms linking purine action to antibiotic resistance, providing a blueprint for deploying these adjuvants against other drug-resistant bacteria. This is applied research with a clear clinical target.
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