bioRxiv · 10.64898/2026.09.09.750459
A transitional senescence program drives inflammatory monocyte state expansion in aging humans
Abstract
Dysfunctional monocyte states contribute to age-related pathologies and systemic inflammation. However, the gene regulatory networks governing the transition to these states remain unknown. Here we used bulk and single-cell multidimensional integrative profiling to reveal previously uncharacterized monocyte state transitions during human aging. We show that a transient senescent-like population arising from classical CD14++ CD16- monocytes drives the accumulation of an inflammatory monocyte state in aging humans. This senescence-associated transition is orchestrated by the master senescence regulator AP-1, which acts on a pre-established chromatin landscape to rewire the monocyte transcription factor (TF) network and activate both senescence- and age-associated inflammatory transcriptional programs. Through integration with clinical transcriptomic datasets, we demonstrate that senescent-like and aged monocytes are transcriptionally primed toward sepsis-associated states. Overall, our study provides the core gene-regulatory principles underlying a senescent-like transitional state in monocytes and identifies AP-1 as an attractive target to modulate systemic inflammation in age and disease.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Vasilopoulos, T., Turano, P. S., Garza-Martinez, L., Akbulut, E., Konda, M., Herbig, U., Fitzgerald-Bocarsly, P., Martinez Zamudio, R. I.. 2026-09-13. A transitional senescence program drives inflammatory monocyte state expansion in aging humans. https://doi.org/10.64898/2026.09.09.750459
Cite the original work for its findings. Save a collection to share your selection of sources.