Expediting glycosaminoglycan synthesis: expanding frontiers for carbohydrate chemical biology
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AI plain-English summaryCarbohydrates that coat every cell in the body are notoriously difficult to synthesise in the lab, and this project aims to build them faster and more cleanly using a continuous flow of enzymes rather than traditional batch chemistry. These sugar-based molecules, called glycosaminoglycans, sit on cell surfaces and inside the body, where they orchestrate everything from inflammation to cell growth. But studying them has been held back by the slow, wasteful, and often irreproducible chemical methods used to make them. The researcher plans to replace those methods with flow biocatalysis—pumping enzymes and raw materials through a tube to produce sugar nucleotides, the building blocks cells use to assemble these carbohydrates, in a controlled and reproducible way. A second strand of the work explores a new prodrug strategy that links these sugar nucleotides to nucleoside analogues, potentially delivering antiviral or anticancer drugs more precisely to diseased cells. If successful, the technology could give biologists a reliable supply of complex carbohydrates for the first time, allowing them to probe how these molecules contribute to disease and opening a faster route to designing new therapies. The work is fundamental science with a clear translational horizon: better tools for carbohydrate chemistry mean better targets for drug development.
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