DOI: 10.1152/ajpheart.00517.2026 ISSN: 0363-6135

Anti-TNF, Pan-JAK, and JAK1-Selective Inhibition Differentially Alter Mechanisms of Flow-Mediated Dilation in Human Microvessels

Annie Kleynerman Roels, Erin C. Birch, Yoshinori Nishijima, Shelby N. Hader, Andreas M. Beyer, Preetika C Sinh

Patients with chronic inflammatory disorders, including inflammatory bowel disease (IBD), carry an increased risk of cardiovascular disease. The 2022 ORAL Surveillance study reported that the pan-selective Janus kinase inhibitor (JAKi) tofacitinib was associated with increased risk of major adverse cardiovascular events (MACE) among patients with rheumatoid arthritis compared to anti–tumor necrosis factor (anti-TNF) therapy. This prompted guideline changes regarding the use of all JAKis, including upadacitinib, a JAK1-selective drug approved for use in chronic inflammatory conditions, including IBD. However, the mechanism underlying JAKi-related MACE outcomes and the significance of JAK selectivity relative to TNF inhibition remain unclear. Microvascular dysfunction (MVD) is a predictor of MACE. Flow-mediated dilation (FMD) is a measure of MVD. Using an established ex vivo model of resistance arterioles isolated from adipose tissue, we performed the first mechanistic comparison of anti–tumor necrosis factor (anti-TNF; infliximab), pan-JAK inhibitor (tofacitinib), and JAK1-selective (upadacitinib) therapies on human microvascular endothelial function. Arterioles were obtained from low-cardiovascular-risk subjects of both sexes. Isolated microvessels were incubated with drugs of interest. Flow-mediated dilation (FMD), an assessment of MVD, was measured before and after nitric oxide (NO) synthase inhibition or hydrogen peroxide (H₂O₂) scavenging. No therapy statistically altered FMD magnitude, yet underlying mechanisms differed. Control and infliximab-treated vessels maintained physiologic NO-mediated dilation. Tofacitinib induced a shift toward pathologic H₂O₂-mediated dilation. Upadacitinib impaired NO-dependent dilation without evidence of compensatory H₂O₂ signaling. In summary, anti-TNF therapy and selective versus non-selective JAKi differentially modulate endothelial mechanisms of vasodilation, suggesting unique microvascular phenotypes with potential implications for cardiovascular risk.

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