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Organ aging signatures in the plasma proteome track health and disease

Hamilton Oh, Jarod Rutledge, Daniel Nachun, Róbert Pálovics, Olamide Abiose, Patricia Moran‐Losada, Divya Channappa, Deniz Yagmur Urey, K. Kim, Yun Ju Sung, Lihua Wang, Jigyasha Timsina, Daniel Western, Menghan Liu, Pat Kohlfeld

Nature · 2023 · ▲ 587 citations

Abstract

Abstract Animal studies show aging varies between individuals as well as between organs within an individual 1–4 , but whether this is true in humans and its effect on age-related diseases is unknown. We utilized levels of human blood plasma proteins originating from specific organs to measure organ-specific aging differences in living individuals. Using machine learning models, we analysed aging in 11 major organs and estimated organ age reproducibly in five independent cohorts encompassing 5,676 adults across the human lifespan. We discovered nearly 20% of the population show strongly accelerated age in one organ and 1.7% are multi-organ agers. Accelerated organ aging confers 20–50% higher mortality risk, and organ-specific diseases relate to faster aging of those organs. We find individuals with accelerated heart aging have a 250% increased heart failure risk and accelerated brain and vascular aging predict Alzheimer’s disease (AD) progression independently from and as strongly as plasma pTau-181 (ref. 5 ), the current best blood-based biomarker for AD. Our models link vascular calcification, extracellular matrix alterations and synaptic protein shedding to early cognitive decline. We introduce a simple and interpretable method to study organ aging using plasma proteomics data, predicting diseases and aging effects.

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Provenance

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OpenAlex
DOI
10.1038/s41586-023-06802-1
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2026-07-25 MST

Cite this

APA
Oh, H., Rutledge, J., Nachun, D., Pálovics, R., Abiose, O., Moran‐Losada, P., Channappa, D., Urey, D.Y., Kim, K., Sung, Y.J., Wang, L., Timsina, J., Western, D., Liu, M., Kohlfeld, P., Budde, J., Wilson, E.N., Guen, Y.L., Maurer, T., &amp; Haney, M.S. (2023). Organ aging signatures in the plasma proteome track health and disease. <em>Nature</em>. https://doi.org/10.1038/s41586-023-06802-1
Vancouver
Oh H, Rutledge J, Nachun D, Pálovics R, Abiose O, Moran‐Losada P, et al. Organ aging signatures in the plasma proteome track health and disease. Nature. 2023. doi:10.1038/s41586-023-06802-1.
BibTeX
@article{hamilton2023Organa, title = {Organ aging signatures in the plasma proteome track health and disease}, author = {Hamilton Oh and Jarod Rutledge and Daniel Nachun and Róbert Pálovics and Olamide Abiose and Patricia Moran‐Losada and Divya Channappa and Deniz Yagmur Urey and K. Kim and Yun Ju Sung and Lihua Wang and Jigyasha Timsina and Daniel Western and Menghan Liu and Pat Kohlfeld and John Budde and Edward N. Wilson and Yann Le Guen and Taylor Maurer and Michael S. Haney and Andrew C. Yang and Zihuai He and Michael D. Greicius and Katrin I. Andreasson and Sanish Sathyan}, journal = {Nature}, year = {2023}, doi = {10.1038/s41586-023-06802-1}, }

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