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A genome‐wide association study of the frailty index highlights brain pathways in ageing

Janice L. Atkins, Juulia Jylhävä, Nancy L. Pedersen, Patrik K. E. Magnusson, Yi Lu, Yunzhang Wang, Sara Hägg, David Melzer, Dylan M. Williams, Luke C. Pilling

Aging Cell · 2021 · ▲ 325 citations

Abstract

Abstract Frailty is a common geriatric syndrome and strongly associated with disability, mortality and hospitalization. Frailty is commonly measured using the frailty index (FI), based on the accumulation of a number of health deficits during the life course. The mechanisms underlying FI are multifactorial and not well understood, but a genetic basis has been suggested with heritability estimates between 30 and 45%. Understanding the genetic determinants and biological mechanisms underpinning FI may help to delay or even prevent frailty. We performed a genome‐wide association study (GWAS) meta‐analysis of a frailty index in European descent UK Biobank participants ( n = 164,610, 60–70 years) and Swedish TwinGene participants ( n = 10,616, 41–87 years). FI calculation was based on 49 or 44 self‐reported items on symptoms, disabilities and diagnosed diseases for UK Biobank and TwinGene, respectively. 14 loci were associated with the FI ( p < 5*10 −8 ). Many FI‐associated loci have established associations with traits such as body mass index, cardiovascular disease, smoking, HLA proteins, depression and neuroticism; however, one appears to be novel. The estimated single nucleotide polymorphism (SNP) heritability of the FI was 11% (0.11, SE 0.005). In enrichment analysis, genes expressed in the frontal cortex and hippocampus were significantly downregulated (adjusted p < 0.05). We also used Mendelian randomization to identify modifiable traits and exposures that may affect frailty risk, with a higher educational attainment genetic risk score being associated with a lower degree of frailty. Risk of frailty is influenced by many genetic factors, including well‐known disease risk factors and mental health, with particular emphasis on pathways in the brain.

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OpenAlex
DOI
10.1111/acel.13459
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2026-07-25 MST

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APA
Atkins, J.L., Jylhävä, J., Pedersen, N.L., Magnusson, P.K.E., Lu, Y., Wang, Y., Hägg, S., Melzer, D., Williams, D.M., &amp; Pilling, L.C. (2021). A genome‐wide association study of the frailty index highlights brain pathways in ageing. <em>Aging Cell</em>. https://doi.org/10.1111/acel.13459
Vancouver
Atkins JL, Jylhävä J, Pedersen NL, Magnusson PKE, Lu Y, Wang Y, et al. A genome‐wide association study of the frailty index highlights brain pathways in ageing. Aging Cell. 2021. doi:10.1111/acel.13459.
BibTeX
@article{janice2021Agenom, title = {A genome‐wide association study of the frailty index highlights brain pathways in ageing}, author = {Janice L. Atkins and Juulia Jylhävä and Nancy L. Pedersen and Patrik K. E. Magnusson and Yi Lu and Yunzhang Wang and Sara Hägg and David Melzer and Dylan M. Williams and Luke C. Pilling}, journal = {Aging Cell}, year = {2021}, doi = {10.1111/acel.13459}, }

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