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Published

Endothelial cell Nrf2 controls neuroinflammation following a systemic insult

Authors

Haoyu Zou, Tom Leah, Zhuochun Huang, Xin He, Eleonora Mameli, Andrea Caporali, Owen Dando, Jing Qiu

Abstract

iScience. 2025 May 12;28(6):112630. doi: 10.1016/j.isci.2025.112630. eCollection 2025 Jun 20.

ABSTRACT

Systemic inflammation can lead to neuroinflammation with acute consequences such as delirium and long-lasting deleterious effects including cognitive decline and the exacerbation of neurodegenerative disease progression. Here, we show that transcription factor Nrf2 controls brain endothelial cell homeostasis and barrier strength. We found that peripheral inflammation caused infiltration of macrophages, microglial activation, and inflammatory reactive astrogliosis, all of which could be prevented by RTA-404, an activator of the transcription factor Nrf2 and close structural relative of the recently FDA-approved Nrf2 activator RTA-408 (omaveloxolone). To identify the key cellular mediator(s), we generated an endothelial cell-specific Nrf2 knockout mouse. Strikingly, the effects of RTA-404 on brain endothelial activation and downstream neuroinflammatory events were abolished by endothelial cell-specific Nrf2 deletion. This places endothelial cell Nrf2 as a peripherally accessible therapeutic target to reduce the CNS-adverse consequences of systemic inflammation.

PMID:40510127 | PMC:PMC12159504 | DOI:10.1016/j.isci.2025.112630

UK DRI Authors

Jing Qiu

Dr Jing Qiu

Emerging Leader

Unravelling microglial signalling in health and disease

Dr Jing Qiu