Understanding the mechanisms behind accelerated ageing and their impact on neurodegenerative disease: a multivariate genomic approach
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AI plain-English summaryA person’s biological age can race ahead of their calendar age, and the genes driving that acceleration differ between individuals, sexes, and ethnic groups. This matters because age-related diseases—from heart failure to dementia—account for over half of all adult illness, and the global population is ageing fast. The “Geroscience Hypothesis” suggests that slowing biological ageing could prevent many of these diseases at once. But current genetic studies of frailty, a common measure of accelerated ageing, have two major gaps: they rely almost entirely on people of European ancestry, and they lump together very different symptoms into a single score, which hides the specific biological pathways at work. This fellowship will apply new multivariate genomic methods to map the genetic drivers of frailty across multiple ancestries, including sex-specific differences. The researcher will then test how those same pathways influence neurodegenerative disease risk, aiming to identify drug targets that could slow both accelerated ageing and neurodegeneration. If successful, the work could shift how we develop treatments for dementia and other age-related conditions—not by targeting each disease separately, but by tackling the underlying biology of ageing itself.
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