From ‘molecular pattern’ to ligand structure and function – the origins of antifungal immunity
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AI plain-English summaryFungal pathogens like *Candida albicans* constantly coat their surfaces with sugar-based molecular patterns that human immune cells must recognise to launch a defence. This project aims to identify the exact chemical structures of those patterns—the precise sugar molecules that immune receptors actually bind to—rather than just the broad categories already known. The team also wants to understand how the fungus actively hides these patterns as it adapts to different tissues in the body, a process called masking that helps it evade immune detection. This matters because fungal infections are a growing threat, especially for hospitalised and immunocompromised patients, yet current diagnostics are slow and often miss the infection. If the researchers succeed in mapping the specific ligand structures and how they change during disease, the work could directly inform the design of faster, more accurate diagnostic tests that detect fungal presence by targeting these molecular signatures. It could also reveal new vulnerabilities in the fungus’s evasion strategy, pointing toward therapeutic targets. The research is fundamentally curiosity-driven—it asks what these molecules actually look like—but the answers have clear practical routes into clinical tools.
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