Molecular and Functional Networks Linked to Sarcopenia Prevention by Caloric Restriction in Rhesus Monkeys.
Clicks: 272
ID: 86807
2020
Article Quality & Performance Metrics
Overall Quality
Improving Quality
0.0
/100
Combines engagement data with AI-assessed academic quality
Reader Engagement
Steady Performance
73.0
/100
266 views
216 readers
Trending
AI Quality Assessment
Not analyzed
Abstract
Caloric restriction (CR) improves survival in nonhuman primates and delays the onset of age-related morbidities including sarcopenia, which is characterized by the age-related loss of muscle mass and function. A shift in metabolism anticipates the onset of muscle-aging phenotypes in nonhuman primates, suggesting a potential role for metabolism in the protective effects of CR. Here, we show that CR induced profound changes in muscle composition and the cellular metabolic environment. Bioinformatic analysis linked these adaptations to proteostasis, RNA processing, and lipid synthetic pathways. At the tissue level, CR maintained contractile content and attenuated age-related metabolic shifts among individual fiber types with higher mitochondrial activity, altered redox metabolism, and smaller lipid droplet size. Biometric and metabolic rate data confirm preserved metabolic efficiency in CR animals that correlated with the attenuation of age-related muscle mass and physical activity. These data suggest that CR-induced reprogramming of metabolism plays a role in delayed aging of skeletal muscle in rhesus monkeys.
Abstract Quality Issue:
This abstract appears to be incomplete or contains metadata (156 words).
Try re-searching for a better abstract.
| Reference Key |
rhoads2020molecularcell
Use this key to autocite in the manuscript while using
SciMatic Manuscript Manager or Thesis Manager
|
|---|---|
| Authors | Rhoads, Timothy W;Clark, Josef P;Gustafson, Grace E;Miller, Karl N;Conklin, Matthew W;DeMuth, Tyler M;Berres, Mark E;Eliceiri, Kevin W;Vaughan, Laura K;Lary, Christine W;Beasley, T Mark;Colman, Ricki J;Anderson, Rozalyn M; |
| Journal | cell systems |
| Year | 2020 |
| DOI |
S2405-4712(19)30463-6
|
| URL | |
| Keywords |
Citations
No citations found. To add a citation, contact the admin at info@scimatic.org
Comments
No comments yet. Be the first to comment on this article.