bioRxiv · 10.64898/2025.12.09.692941
Soluble epoxide hydrolase upregulation in Alzheimer's disease promotes blood-brain barrier dysfunction
Abstract
Recent advances in anti-amyloid therapies for Alzheimers disease have been promising, but they have also highlighted critical challenges, including increased vascular complications, such as amyloid-related imaging abnormalities. Emerging evidence suggests that the soluble epoxide hydrolase may be a promising therapeutic target due to the involvement of sEH-derived diols in inflammation, oxidative stress, and vascular destabilization. APPPS1 mice were crossed with an inducible soluble epoxide hydrolase knock-out mouse line. The knock-out was induced before onset of amyloid deposition, and then the mice were analyzed using histological, molecular, and RNA sequencing techniques. Here, we identify astrocytic soluble epoxide hydrolase as a key mediator of vascular instability in Alzheimers disease. Targeted astrocyte-specific deletion of soluble epoxide hydrolase in APPPS1 mice dramatically mitigated vascular changes, reducing the vascular amyloid burden by 67.95% and preserving VE-cadherin architecture. Importantly, vasomotion was markedly impaired in the Alzheimers disease model and was preserved in soluble epoxide hydrolase-deficient animals. Transcriptomic profiling of vasculature in APPPS1xsEH{Delta}AC mice revealed upregulated expression of genes critical for neurovascular protection. These findings identify soluble epoxide hydrolase as a central regulator of neurovascular dysfunction and underscore its therapeutic potential in increasing vascular stability in Alzheimers disease.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
DeMeglio, M., dos Santos De Biasi, E., Breunig, P., Sauerland, C., Candlish, M., Guenther, S., Kawase, H., Peguera, B., Molenda, C., Nilsson, P. R., Hu, J., Hille, S., Mueller, O., Acker-Palmer, A., Hammock, B., Underhill, T. M., Junek, S., Offermanns, S., Fleming, I., Hefendehl, J. K.. 2025-12-11. Soluble epoxide hydrolase upregulation in Alzheimer's disease promotes blood-brain barrier dysfunction. https://doi.org/10.64898/2025.12.09.692941
Cite the original work for its findings. Save a collection to share your selection of sources.