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Interferon-related inflammaging links epigenetic age acceleration to multimorbidity

Zhaoli Liu, Athanasios Ziogas, Yihan Zhang, Manoj Kumar Gupta, Konstantin Föhse, Esther Taks, Elisabeth A. Dulfer, Andrei Sarlea, Lorenzo Ventriglia, Büsra Geckin, Mohamad Ballan, Nienke van Unen, Leonie Helder, Stephanie Trittel, Peggy Riese

Cell Genomics · 2026 · ▲ 1 citations

Abstract

Chronic systemic inflammation and DNA methylation changes are two major telomere(definition) attrition, cellular senescence(definition))." style="text-decoration:underline dotted; text-underline-offset:2px; cursor:help;">hallmarks of aging(definition), yet their interaction is poorly known. We investigated the relation between circulating inflammatory proteome and epigenetic age acceleration as assessed by DNA methylation in four independent cohorts of different ages and health conditions. Epigenetic age scores known to predict human health span (GrimAge and PhenoAge) were more strongly associated with age-associated inflammatory proteins, frailty, and multimorbidity when compared to epigenetic age scores associated with lifespan (Horvath and Hannum). Mendelian randomization analyses showed that blood concentrations of important inflammatory cytokines associated with the interferon pathway (CXCL9, CXCL10, CCL11, and IL-18) increase with age and are causal drivers of epigenetic age acceleration and age-related diseases. Furthermore, aging was associated with dysregulation of cytokine production capacity in immune cells in response to microbial stimulation. These findings argue that the interferon pathway may represent a target for anti-aging interventions.

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Provenance

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OpenAlex
DOI
10.1016/j.xgen.2026.101218
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2026-07-10 MST

Cite this

APA
Liu, Z., Ziogas, A., Zhang, Y., Gupta, M.K., Föhse, K., Taks, E., Dulfer, E.A., Sarlea, A., Ventriglia, L., Geckin, B., Ballan, M., Unen, N.V., Helder, L., Trittel, S., Riese, P., Moorlag, S., Bree, C.D., Koeken, V., Mourits, V., &amp; Jaeger, M. (2026). Interferon-related inflammaging links epigenetic age acceleration to multimorbidity. <em>Cell Genomics</em>. https://doi.org/10.1016/j.xgen.2026.101218
Vancouver
Liu Z, Ziogas A, Zhang Y, Gupta MK, Föhse K, Taks E, et al. Interferon-related inflammaging links epigenetic age acceleration to multimorbidity. Cell Genomics. 2026. doi:10.1016/j.xgen.2026.101218.
BibTeX
@article{zhaoli2026Interf, title = {Interferon-related inflammaging links epigenetic age acceleration to multimorbidity}, author = {Zhaoli Liu and Athanasios Ziogas and Yihan Zhang and Manoj Kumar Gupta and Konstantin Föhse and Esther Taks and Elisabeth A. Dulfer and Andrei Sarlea and Lorenzo Ventriglia and Büsra Geckin and Mohamad Ballan and Nienke van Unen and Leonie Helder and Stephanie Trittel and Peggy Riese and Simone Moorlag and Charlotte de Bree and Valerie Koeken and Vera Mourits and Martin Jaeger and Frank Peßler and Carlos A. Guzmán and Leo A.B. Joosten and Yang Li and Cheng-Jian Xu}, journal = {Cell Genomics}, year = {2026}, doi = {10.1016/j.xgen.2026.101218}, }

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