Skip to content
Open access · OA via OpenAlex

Chronic Rapamycin Restores Brain Vascular Integrity and Function Through NO Synthase Activation and Improves Memory in Symptomatic Mice Modeling Alzheimer’s Disease

Ai-Ling Lin, Wei Zheng, Jonathan J. Halloran, Raquel R Burbank, Stacy A. Hussong, Matthew J. Hart, Martin A. Javors, Yen‐Yu Ian Shih, Eric R. Muir, Rene Solano Fonseca, Randy Strong, Arlan Richardson, James D. Lechleiter, Peter T. Fox, Verónica Galván

Journal of Cerebral Blood Flow & Metabolism · 2013 · ▲ 211 citations

Abstract

Vascular pathology is a major feature of Alzheimer's disease (AD) and other dementias. We recently showed that chronic administration of the target-of-mTOR(definition)-inhibiting drug studied for extending healthspan and lifespan." style="text-decoration:underline dotted; text-underline-offset:2px; cursor:help;">rapamycin(definition) (TOR) inhibitor rapamycin, which extends lifespan and delays aging, halts the progression of AD-like disease in transgenic human (h)APP mice modeling AD when administered before disease onset. Here we demonstrate that chronic reduction of TOR activity by rapamycin treatment started after disease onset restored cerebral blood flow (CBF) and brain vascular density, reduced cerebral amyloid angiopathy and microhemorrhages, decreased amyloid burden, and improved cognitive function in symptomatic hAPP (AD) mice. Like acetylcholine (ACh), a potent vasodilator, acute rapamycin treatment induced the phosphorylation of endothelial nitric oxide (NO) synthase (eNOS) and NO release in brain endothelium. Administration of the NOS inhibitor L-NG-Nitroarginine methyl ester reversed vasodilation as well as the protective effects of rapamycin on CBF and vasculature integrity, indicating that rapamycin preserves vascular density and CBF in AD mouse brains through NOS activation. Taken together, our data suggest that chronic reduction of TOR activity by rapamycin blocked the progression of AD-like cognitive and histopathological deficits by preserving brain vascular integrity and function. Drugs that inhibit the TOR pathway may have promise as a therapy for AD and possibly for vascular dementias.

◌ CITATION ONLY
Full text is not openly licensed for redistribution here. Read it at the source:

Read at source →

Provenance

Source
OpenAlex
DOI
10.1038/jcbfm.2013.82
Canonical
link ↗
Fetched
2026-08-21 MST

Cite this

APA
Lin, A., Zheng, W., Halloran, J.J., Burbank, R.R., Hussong, S.A., Hart, M.J., Javors, M.A., Shih, Y.I., Muir, E.R., Fonseca, R.S., Strong, R., Richardson, A., Lechleiter, J.D., Fox, P.T., &amp; Galván, V. (2013). Chronic Rapamycin Restores Brain Vascular Integrity and Function Through NO Synthase Activation and Improves Memory in Symptomatic Mice Modeling Alzheimer’s Disease. <em>Journal of Cerebral Blood Flow & Metabolism</em>. https://doi.org/10.1038/jcbfm.2013.82
Vancouver
Lin A, Zheng W, Halloran JJ, Burbank RR, Hussong SA, Hart MJ, et al. Chronic Rapamycin Restores Brain Vascular Integrity and Function Through NO Synthase Activation and Improves Memory in Symptomatic Mice Modeling Alzheimer’s Disease. Journal of Cerebral Blood Flow & Metabolism. 2013. doi:10.1038/jcbfm.2013.82.
BibTeX
@article{ailing2013Chroni, title = {Chronic Rapamycin Restores Brain Vascular Integrity and Function Through NO Synthase Activation and Improves Memory in Symptomatic Mice Modeling Alzheimer’s Disease}, author = {Ai-Ling Lin and Wei Zheng and Jonathan J. Halloran and Raquel R Burbank and Stacy A. Hussong and Matthew J. Hart and Martin A. Javors and Yen‐Yu Ian Shih and Eric R. Muir and Rene Solano Fonseca and Randy Strong and Arlan Richardson and James D. Lechleiter and Peter T. Fox and Verónica Galván}, journal = {Journal of Cerebral Blood Flow & Metabolism}, year = {2013}, doi = {10.1038/jcbfm.2013.82}, }

Research neighborhood

References, citing works, and semantically nearest findings. Click a node to open it.

Related findings