Morgan_2026_Geroscience__

Reference

Title : PTUPB improves cognitive function in Alzheimer's disease associated with enhancing cerebral vascular myogenic response and attenuating vascular remodeling - Morgan_2026_Geroscience__
Author(s) : Morgan GC , Gregory A , Tang C , Hwang SH , Border JJ , Xu J , Liu Y , Bai S , Lee TJ , Cantwell C , Bunn D , Wagner KM , Morisseau C , Pittman C , Ngo A , Osayi P , Pabbidi A , O'Herron P , Bagi Z , Filosa JA , Yu H , McReynolds C , Hammock BD , Roman RJ , Fan F
Ref : Geroscience , : , 2026
Abstract :

Genetic studies have linked EPHX2 (encoding soluble epoxide hydrolase, sEH) and PTGS2 (encoding cyclooxygenase-2, COX-2) to Alzheimer's disease (AD). Elevated levels of sEH and COX-2 found in AD patients and animals suggest their involvement in neurodegeneration, glial activation, vascular dysfunction, and inflammation. This study evaluated the effects of a new dual sEH/COX-2 inhibitor, PTUPB, on cerebrovascular function and cognition in TgF344-AD rats. The rats received oral PTUPB (2 mg/kg/day) for 25 days. Body weight, plasma glucose, and HbA1c levels remained stable between PTUPB- and vehicle-treated AD rats. PTUPB significantly improved recognition memory in AD rats, as detected by the novel object recognition test. Pressure myography showed that PTUPB restored myogenic responses and increased the distensibility of the middle cerebral arteries (MCAs) in AD rats. Acute PTUPB (0.1 and 1 microM) enhanced myogenic contraction in response to elevated perfusion pressure in AD MCAs, with minimal effects in wild-type vessels. Transcriptomic analysis of cerebral vascular smooth muscle cells from AD rats revealed that PTUPB influences genes involved in contractility, extracellular matrix remodeling, inflammation, and oxidative stress. These results provide new evidence that dual inhibition of sEH and COX-2 improves cognition in AD and is associated with enhanced myogenic response via attenuation of vascular remodeling. Our findings highlight the potential of PTUPB as a therapeutic approach for cerebrovascular dysfunction in AD.

PubMedSearch : Morgan_2026_Geroscience__
PubMedID: 41652156
Gene_locus related to this paper: human-EPHX2

Related information

Inhibitor PTUPB
Gene_locus human-EPHX2

Citations formats

Morgan GC, Gregory A, Tang C, Hwang SH, Border JJ, Xu J, Liu Y, Bai S, Lee TJ, Cantwell C, Bunn D, Wagner KM, Morisseau C, Pittman C, Ngo A, Osayi P, Pabbidi A, O'Herron P, Bagi Z, Filosa JA, Yu H, McReynolds C, Hammock BD, Roman RJ, Fan F (2026)
PTUPB improves cognitive function in Alzheimer's disease associated with enhancing cerebral vascular myogenic response and attenuating vascular remodeling
Geroscience :

Morgan GC, Gregory A, Tang C, Hwang SH, Border JJ, Xu J, Liu Y, Bai S, Lee TJ, Cantwell C, Bunn D, Wagner KM, Morisseau C, Pittman C, Ngo A, Osayi P, Pabbidi A, O'Herron P, Bagi Z, Filosa JA, Yu H, McReynolds C, Hammock BD, Roman RJ, Fan F (2026)
Geroscience :