Open access · CC-BY
via OpenAlex
Acarbose improved survival for <i>Apc<sup>+/Min</sup></i> mice
Sherry G. Dodds, Manish Parihar, Martin A. Javors, Jia Nie, Nicolas Musi, Z. Dave Sharp, Paul Hasty
Aging Cell · 2020 · ▲ 26 citations
Abstract
Abstract Acarbose blocks the digestion of complex carbohydrates, and the NIA Intervention Testing Program (ITP) found that it improved survival when fed to mice. Yet, we do not know if lifespan extension was caused by its effect on metabolism with regard to the soma or cancer suppression. Cancer caused death for ~80% of ITP mice. The ITP found mTOR(definition)-inhibiting drug studied for extending healthspan and lifespan." style="text-decoration:underline dotted; text-underline-offset:2px; cursor:help;">rapamycin(definition), an inhibitor to the pro‐growth mTORC1 (mechanistic target of rapamycin complex 1) pathway, improved survival and it suppressed tumors in Apc +/Min mice providing a plausible rationale to ask if acarbose had a similar effect. Apc +/Min is a mouse model prone to intestinal polyposis and a mimic of familial adenomatous polyposis in people. Polyp‐associated anemia contributed to their death. To address this knowledge gap, we fed two doses of acarbose to Apc +/Min mice. Acarbose improved median survival at both doses. A cross‐sectional analysis was performed next. At both doses, ACA fed mice exhibited reduced intestinal crypt depth, weight loss despite increased food consumption and reduced postprandial blood glucose and plasma insulin, indicative of improved insulin sensitivity. Dose‐independent and dose‐dependent compensatory liver responses were observed for AMPK and mTORC1 activities, respectively. Only mice fed the high dose diet exhibited reductions in tumor number with higher hematocrits. Because low‐dose acarbose improved lifespan but failed to reduced tumors, its effects seem to be independent of cancer. These data implicate the importance of improved carbohydrate metabolism on survival.
◌ CITATION ONLY
Full text is not openly licensed for redistribution here. Read it at the source:
Provenance
- Source
- OpenAlex
- DOI
- 10.1111/acel.13088
- Canonical
- link ↗
- Fetched
- 2026-06-29 MST
Cite this
APA
Dodds, S.G., Parihar, M., Javors, M.A., Nie, J., Musi, N., Sharp, Z.D., & Hasty, P. (2020). Acarbose improved survival for <i>Apc<sup>+/Min</sup></i> mice. <em>Aging Cell</em>. https://doi.org/10.1111/acel.13088
Vancouver
Dodds SG, Parihar M, Javors MA, Nie J, Musi N, Sharp ZD, et al. Acarbose improved survival for <i>Apc<sup>+/Min</sup></i> mice. Aging Cell. 2020. doi:10.1111/acel.13088.
BibTeX
@article{sherry2020Acarbo,
title = {Acarbose improved survival for <i>Apc<sup>+/Min</sup></i> mice},
author = {Sherry G. Dodds and Manish Parihar and Martin A. Javors and Jia Nie and Nicolas Musi and Z. Dave Sharp and Paul Hasty},
journal = {Aging Cell},
year = {2020},
doi = {10.1111/acel.13088},
}
Research neighborhood
References, citing works, and semantically nearest findings. Click a node to open it.
Related findings
Aging Cell 2019
Open access · CC-BY
Acarbose improves health and lifespan in aging HET3 mice
Aging Cell 2013
Open access · CC-BY
Rapamycin‐mediated lifespan increase in mice is dose and sex dependent and metabolically distinct from dietary restriction
bioRxiv (Cold Spring Harbor Laboratory) 2022
Preprint · CC-BY
Neuroprotective effects of Canagliflozin: lessons from aged genetically diverse UM-HET3 mice
Nature 2026
Citation only
Sterilization and contraception increase lifespan across vertebrates.
Frontiers in aging 2025
Open access · OA
The lifespan-extending MEK1 inhibitor trametinib promotes regulation of de novo lipogenesis enzymes by chaperone-mediated autophagy.
Frontiers in Aging 2025
Open access · CC-BY