bioRxiv · 10.64898/2026.07.30.741848
Comprehensive transcriptomic profiling uncovers an inflammatory maturation program conserved in human and mouse dendritic cells
Abstract
Conventional dendritic cells (cDCs) integrate signals to balance tolerance and immunity, but how steady-state cDC programs are changed during inflammatory maturation remains incompletely resolved. Here, using Seqtometry-based analysis of mouse and human cDCs, we identify distinct steady-state cDC1 gene programs enriched for either tolerance-associated or immune response-associated (pre-immunogenic) transcriptomic features that are present under homeostatic conditions in fully differentiated cDCs with divergent predicted immune functions. Under inflammatory conditions, the tolerance-linked features are reduced, whereas the pre-immunogenic program is extended in response to type I interferon signaling and is selectively impaired by Ifnar1 deficiency. This core inflammatory program is conserved across mouse and human cDC subsets, and while retaining disease-specific transcriptomic features, it is detected in infection, cancer, and autoimmunity. Together, these findings establish a gene program-based framework for cDC inflammatory maturation that extends beyond a binary immature-versus-mature classification and supports the identification of disease-associated cDC biomarkers.
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Bourque, J., Kousnetsov, R., Hawiger, D.. 2026-08-04. Comprehensive transcriptomic profiling uncovers an inflammatory maturation program conserved in human and mouse dendritic cells. https://doi.org/10.64898/2026.07.30.741848
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