Scinovex
article Open AccessTop 1% cited

Rapamycin, But Not Resveratrol or Simvastatin, Extends Life Span of Genetically Heterogeneous Mice

The Journals of Gerontology Series A · 2010 · Vol. 66A(2) · pp. 191–201
Richard A. MillerDavid E. HarrisonClinton M. AstleJoseph A. BaurAngela R. BoydRafael de CaboElizabeth FernándezKevin FlurkeyMartin A. JavorsJames F. NelsonCarlos J. OrihuelaScott D. PletcherZ. Dave SharpDavid SinclairJoseph W. StarnesJohn E. WilkinsonNancy L. NadonRandy Strong

Abstract

Rapamycin was administered in food to genetically heterogeneous mice from the age of 9 months and produced significant increases in life span, including maximum life span, at each of three test sites. Median survival was extended by an average of 10% in males and 18% in females. Rapamycin attenuated age-associated decline in spontaneous activity in males but not in females. Causes of death were similar in control and rapamycin-treated mice. Resveratrol (at 300 and 1200 ppm food) and simvastatin (12 and 120 ppm) did not have significant effects on survival in male or female mice. Further evaluation of rapamycin's effects on mice is likely to help delineate the role of the mammalian target of rapamycin complexes in the regulation of aging rate and age-dependent diseases and may help to guide a search for drugs that retard some or all of the diseases of aging.

Sirtuins and Resveratrol in MedicineGenetics, Aging, and Longevity in Model OrganismsMuscle Physiology and DisordersSimvastatinLife spanResveratrolLongevitySirolimusBiologyPharmacologyEndocrinologyPhysiologyInternal medicine

MeSH terms

SimvastatinSirolimusMiceResveratrolAgingAnimalsFemaleLongevityMaleMice, Inbred BALB CMice, Inbred C3HMice, Inbred C57BLMice, Inbred DBAStilbenesGenetic Heterogeneity
Citations
902
FWCI
26.82
field-weighted impact
References
51
Percentile
100%
vs. same field & year
Citations per year
Cited by
mTOR Signaling in Growth Control and Disease
Cell · 2012 · 8,373 citations
Metformin as a Tool to Target Aging
Cell Metabolism · 2016 · 1,015 citations
The role of curcumin in aging and senescence: Molecular mechanisms
Biomedicine & Pharmacotherapy · 2020 · 346 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.