Endothelial Resolution of Inflammation is Delayed Following JAK-driven but not NFκB-dependent Activation
Valenzuela, N. M.
Show abstract
Blood endothelial cells actively regulate egress of leukocytes into peripheral tissues in response to inflammatory insult. The resolution of inflammation is critical for healing and return to homeostasis, but the timing and mechanisms involved in return to a non-inflamed state are not well-understood. We examined vascular endothelial activation comparing NF{kappa}B-driven TNF and JAK/STAT-mediated IFN{gamma}. Pro-adhesive gene expression, phenotype and secretome of human endothelial cells from 6 vascular beds were measured under chronic cytokine stimulation, and after short-term cytokine priming followed by withdrawal. The majority of inducible TNF effectors require continuous exposure for reinforcement of the altered phenotype. NF{kappa}B and target genes are quickly down-regulated in the absence of cytokine. In contrast, the consequences of even short exposure to IFN{gamma} are long-lasting and broad, with sustained elevation of adhesion molecules and chemokines up to 48hr later. JAK/STAT and interferon response factor expression are likewise durable, dependent on new transcription and autonomous of continuous IFN{gamma}. Finally, intact persistent STAT expression and JAK signaling in the endothelium is required to maintain a pro-adhesive phenotype after IFN{gamma} withdrawal, which could be prevented by the JAK1/2 inhibitor ruxolitinib. Our results reveal a sustained JAK-dependent perturbation of endothelial function after exposure to IFN{gamma}, but not after NF{kappa}B-driven inflammation.
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