Open access · CC-BY
via OpenAlex
Dose-dependent effects of mTOR inhibition on weight and mitochondrial disease in mice
Simon C. Johnson, Melana E. Yanos, Alessandro Bitto, Anthony S. Castanza, Arni Gagnidze, Brenda González, Kanav Gupta, Jessica Hui, Conner Jarvie, Brittany M. Johnson, Nicolas J. LeTexier, Lanny McCanta, Maya Sangesland, Oliver Tamis, Lauren Uhde
Frontiers in Genetics · 2015 · ▲ 94 citations
Abstract
mTOR(definition)-inhibiting drug studied for extending healthspan and lifespan." style="text-decoration:underline dotted; text-underline-offset:2px; cursor:help;">Rapamycin(definition) extends lifespan and attenuates age-related pathologies in mice when administered through diet at 14 parts per million (PPM). Recently, we reported that daily intraperitoneal injection of rapamycin at 8 mg/kg attenuates mitochondrial disease symptoms and progression in the Ndufs4 knockout mouse model of Leigh Syndrome. Although rapamycin is a widely used pharmaceutical agent dosage has not been rigorously examined and no dose-response profile has been established. Given these observations we sought to determine if increased doses of oral rapamycin would result in more robust impact on mTOR driven parameters. To test this hypothesis, we compared the effects of dietary rapamycin at doses ranging from 14 to 378 PPM on developmental weight in control and Ndufs4 knockout mice and on health and survival in the Ndufs4 knockout model. High dose rapamycin was well tolerated, dramatically reduced weight gain during development, and overcame gender differences. The highest oral dose, approximately 27-times the dose shown to extend murine lifespan, increased survival in Ndufs4 knockout mice similarly to daily rapamycin injection without observable adverse effects. These findings have broad implications for the effective use of rapamycin in murine studies and for the translational potential of rapamycin in the treatment of mitochondrial disease. This data, further supported by a comparison of available literature, suggests that 14 PPM dietary rapamycin is a sub-optimal dose for targeting mTOR systemically in mice. Our findings suggest that the role of mTOR in mammalian biology may be broadly underestimated when determined through treatment with rapamycin at commonly used doses.
◌ CITATION ONLY
Full text is not openly licensed for redistribution here. Read it at the source:
Provenance
- Source
- OpenAlex
- DOI
- 10.3389/fgene.2015.00247
- Canonical
- link ↗
- Fetched
- 2026-06-13 MST
Cite this
APA
Johnson, S.C., Yanos, M.E., Bitto, A., Castanza, A.S., Gagnidze, A., González, B., Gupta, K., Hui, J., Jarvie, C., Johnson, B.M., LeTexier, N.J., McCanta, L., Sangesland, M., Tamis, O., Uhde, L., Ende, A.V.D., Rabinovitch, P.S., Suh, Y., & Kaeberlein, M. (2015). Dose-dependent effects of mTOR inhibition on weight and mitochondrial disease in mice. <em>Frontiers in Genetics</em>. https://doi.org/10.3389/fgene.2015.00247
Vancouver
Johnson SC, Yanos ME, Bitto A, Castanza AS, Gagnidze A, González B, et al. Dose-dependent effects of mTOR inhibition on weight and mitochondrial disease in mice. Frontiers in Genetics. 2015. doi:10.3389/fgene.2015.00247.
BibTeX
@article{simon2015Dosede,
title = {Dose-dependent effects of mTOR inhibition on weight and mitochondrial disease in mice},
author = {Simon C. Johnson and Melana E. Yanos and Alessandro Bitto and Anthony S. Castanza and Arni Gagnidze and Brenda González and Kanav Gupta and Jessica Hui and Conner Jarvie and Brittany M. Johnson and Nicolas J. LeTexier and Lanny McCanta and Maya Sangesland and Oliver Tamis and Lauren Uhde and Alex Van Den Ende and Peter S. Rabinovitch and Yousin Suh and Matt Kaeberlein},
journal = {Frontiers in Genetics},
year = {2015},
doi = {10.3389/fgene.2015.00247},
}
Research neighborhood
References, citing works, and semantically nearest findings. Click a node to open it.
Related findings
PLoS ONE 2010
Open access · CC-BY
Inhibition of mTOR by Rapamycin Abolishes Cognitive Deficits and Reduces Amyloid-β Levels in a Mouse Model of Alzheimer's Disease
The Journals of Gerontology Series A 2016
Open access · OA
Rapamycin: An InhibiTOR of Aging Emerges From the Soil of Easter Island
Scientific Reports 2018
Open access · CC-BY
Premature recruitment of oocyte pool and increased mTOR activity in Fmr1 knockout mice and reversal of phenotype with rapamycin
Aging Cell 2024
Open access · CC-BY
Aging‐associated atrial fibrillation: A comprehensive review focusing on the potential mechanisms
Journal of Neuroscience 2021
Open access · OA
mTOR Attenuation with Rapamycin Reverses Neurovascular Uncoupling and Memory Deficits in Mice Modeling Alzheimer's Disease
Frontiers in Genetics 2012
Open access · CC-BY