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Aging-linked systemic lipid signature is reprogrammed by caloric restriction in rhesus monkeys.
Abou Elhassan SI, Clark JP, Kuang D, Rhoads TW, Colman RJ, Coon JJ, Anderson RM, Overmyer KA.
Molecular systems biology · 2026
Abstract
Caloric restriction(definition) (CR) without malnutrition delays aging in diverse species, including primates, with metabolic changes implicated in this process. To facilitate exploration of CR metabolism with aging, we developed a 15-minute LC-MS/MS metabolomics and lipidomics method, leveraging monophasic extractions and wide elution-strength solvents. We analyzed 494 plasma samples collected over 25 years from male and female rhesus monkeys (Macaca mulatta) on a Control or CR (30% restricted) diet. Quantitation of 359 biomolecules revealed that aging, followed by sex and diet, had the largest impact on metabolite abundances. In both sexes, aging was associated with significantly lower plasma levels of sphingomyelins (SMs) and higher levels of diglycerides (DGs) and triglycerides (TGs), each of which was opposed by CR. Sex dimorphism was evident by the increased abundance of phosphocholine (PC)-containing lipids in females. These results highlight the utility of a rapid metabolomics and lipidomics approach to elucidate complex biology in large-scale studies.
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Provenance
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- Europe PMC
- DOI
- 10.1038/s44320-025-00177-3
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- 2026-07-01 MST
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APA
SI, A.E., JP, C., D, K., TW, R., RJ, C., JJ, C., RM, A., & KA., O. (2026). Aging-linked systemic lipid signature is reprogrammed by caloric restriction in rhesus monkeys. <em>Molecular systems biology</em>. https://doi.org/10.1038/s44320-025-00177-3
Vancouver
SI AE, JP C, D K, TW R, RJ C, JJ C, et al. Aging-linked systemic lipid signature is reprogrammed by caloric restriction in rhesus monkeys. Molecular systems biology. 2026. doi:10.1038/s44320-025-00177-3.
BibTeX
@article{abou2026Agingl,
title = {Aging-linked systemic lipid signature is reprogrammed by caloric restriction in rhesus monkeys.},
author = {Abou Elhassan SI and Clark JP and Kuang D and Rhoads TW and Colman RJ and Coon JJ and Anderson RM and Overmyer KA.},
journal = {Molecular systems biology},
year = {2026},
doi = {10.1038/s44320-025-00177-3},
}
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