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Human PBMC scRNA-seq–based aging clocks reveal ribosome to inflammation balance as a single-cell aging hallmark and super longevity

Hongming Zhu, Jiawei Chen, Kangping Liu, Lei Gao, Haiyan Wu, Liangliang Ma, Jieru Zhou, Zhongmin Liu, Jing‐Dong J. Han

Science Advances · 2023 · ▲ 139 citations

Abstract

Quantifying aging rate is important for evaluating age-associated decline and mortality. A blood single-cell RNA sequencing dataset for seven supercentenarians (SCs) was recently generated. Here, we generate a reference 28-sample aging cohort to compute a single-cell level aging clock and to determine the biological age of SCs. Our clock model placed the SCs at a blood biological age to between 80.43 and 102.67 years. Compared to the model-expected aging trajectory, SCs display increased naive CD8 + T cells, decreased cytotoxic CD8 + T cells, memory CD4 + T cells, and megakaryocytes. As the most prominent molecular hallmarks at the single-cell level, SCs contain more cells and cell types with high ribosome level, which is associated with and, according to Bayesian network inference, contributes to a low inflammation state and slow aging of SCs. Inhibiting ribosomal activity or translation in monocytes validates such translation against inflammation balance revealed by our single-cell aging clock.

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OpenAlex
DOI
10.1126/sciadv.abq7599
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2026-07-22 MST

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APA
Zhu, H., Chen, J., Liu, K., Gao, L., Wu, H., Ma, L., Zhou, J., Liu, Z., &amp; Han, J.J. (2023). Human PBMC scRNA-seq–based aging clocks reveal ribosome to inflammation balance as a single-cell aging hallmark and super longevity. <em>Science Advances</em>. https://doi.org/10.1126/sciadv.abq7599
Vancouver
Zhu H, Chen J, Liu K, Gao L, Wu H, Ma L, et al. Human PBMC scRNA-seq–based aging clocks reveal ribosome to inflammation balance as a single-cell aging hallmark and super longevity. Science Advances. 2023. doi:10.1126/sciadv.abq7599.
BibTeX
@article{hongming2023HumanP, title = {Human PBMC scRNA-seq–based aging clocks reveal ribosome to inflammation balance as a single-cell aging hallmark and super longevity}, author = {Hongming Zhu and Jiawei Chen and Kangping Liu and Lei Gao and Haiyan Wu and Liangliang Ma and Jieru Zhou and Zhongmin Liu and Jing‐Dong J. Han}, journal = {Science Advances}, year = {2023}, doi = {10.1126/sciadv.abq7599}, }

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