Expanding the electron cryo-tomography toolset to enable imaging of disease in the brain
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AI plain-English summaryA new workflow using electron cryo-tomography will map the molecular changes inside brain tissue from Alzheimer’s patients and mouse models, capturing the toxic protein intermediates that drive cell death. Current imaging methods can spot the hallmark amyloid plaques and tau tangles in Alzheimer’s, but these aggregates do not always correlate with cognitive decline. The real culprits are likely smaller, intermediate protein assemblies that disrupt cells from within. Until now, no technique could visualise these structures inside intact brain tissue at the molecular scale. This project addresses that gap by developing a streamlined method to vitrify brain samples, sculpt them with a plasma ion beam, and analyse them at high resolution. If successful, the workflow will reveal how Aβ and tau intermediates organise within their native subcellular environment, showing exactly how they damage neurons. This is fundamental science—it will not produce a diagnostic test or treatment tomorrow. But understanding the precise molecular mechanisms of cell disruption in Alzheimer’s could eventually guide drug design toward the right targets, rather than the inert aggregates that have failed in clinical trials. Similar structural biology advances have transformed our understanding of other neurodegenerative diseases.
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