Open access · CC-BY
via OpenAlex
Aging and caloric restriction impact adipose tissue, adiponectin, and circulating lipids
Karl N. Miller, Maggie S. Burhans, Josef P. Clark, Porsha R. Howell, Michael A. Polewski, Tyler M. DeMuth, Kevin W. Eliceiri, Mary J. Lindstrom, James M. Ntambi, Rozalyn M. Anderson
Aging Cell · 2017 · ▲ 138 citations
Abstract
Adipose tissue expansion has been associated with system-wide metabolic dysfunction and increased vulnerability to diabetes, cancer, and cardiovascular disease. A reduction in adiposity is a hallmark of caloric restriction(definition) (CR), an intervention that extends longevity and delays the onset of these same age-related conditions. Despite these parallels, the role of adipose tissue in coordinating the metabolism of aging is poorly defined. Here, we show that adipose tissue metabolism and secretory profiles change with age and are responsive to CR. We conducted a cross-sectional study of CR in adult, late-middle-aged, and advanced-aged mice. Adiposity and the relationship between adiposity and circulating levels of the adipose-derived peptide hormone adiponectin were age-sensitive. CR impacted adiposity but only levels of the high molecular weight isoform of adiponectin responded to CR. Activators of metabolism including PGC-1a, SIRT1, and NAMPT were differentially expressed with CR in adipose tissues. Although age had a significant impact on NAD metabolism, as detected by biochemical assay and multiphoton imaging, the impact of CR was subtle and related to differences in reliance on oxidative metabolism. The impact of age on circulating lipids was limited to composition of circulating phospholipids. In contrast, the impact of CR was detected in all lipid classes regardless of age, suggesting a profound difference in lipid metabolism. These data demonstrate that aspects of adipose tissue metabolism are life phase specific and that CR is associated with a distinct metabolic state, suggesting that adipose tissue signaling presents a suitable target for interventions to delay aging.
◌ CITATION ONLY
Full text is not openly licensed for redistribution here. Read it at the source:
Provenance
- Source
- OpenAlex
- DOI
- 10.1111/acel.12575
- Canonical
- link ↗
- Fetched
- 2026-09-09 MST
Cite this
APA
Miller, K.N., Burhans, M.S., Clark, J.P., Howell, P.R., Polewski, M.A., DeMuth, T.M., Eliceiri, K.W., Lindstrom, M.J., Ntambi, J.M., & Anderson, R.M. (2017). Aging and caloric restriction impact adipose tissue, adiponectin, and circulating lipids. <em>Aging Cell</em>. https://doi.org/10.1111/acel.12575
Vancouver
Miller KN, Burhans MS, Clark JP, Howell PR, Polewski MA, DeMuth TM, et al. Aging and caloric restriction impact adipose tissue, adiponectin, and circulating lipids. Aging Cell. 2017. doi:10.1111/acel.12575.
BibTeX
@article{karl2017Aginga,
title = {Aging and caloric restriction impact adipose tissue, adiponectin, and circulating lipids},
author = {Karl N. Miller and Maggie S. Burhans and Josef P. Clark and Porsha R. Howell and Michael A. Polewski and Tyler M. DeMuth and Kevin W. Eliceiri and Mary J. Lindstrom and James M. Ntambi and Rozalyn M. Anderson},
journal = {Aging Cell},
year = {2017},
doi = {10.1111/acel.12575},
}
Research neighborhood
References, citing works, and semantically nearest findings. Click a node to open it.
Related findings
Aging Cell 2015
Open access · CC-BY
Regional metabolic heterogeneity of the hippocampus is nonuniformly impacted by age and caloric restriction
PLoS ONE 2012
Open access · CC-BY
The Metabolic Profile of Long-Lived Drosophila melanogaster
Aging Cell 2026
Open access · CC-BY
An Extracellular Matrix Aging Clock Based on Circulating Matrisome Proteins Predicts Biological Aging and Disease
Aging cell 2026
Open access · OA
An Extracellular Matrix Aging Clock Based on Circulating Matrisome Proteins Predicts Biological Aging and Disease.
Diabetes 2015
Preprint · OA
Cellular Senescence in Type 2 Diabetes: A Therapeutic Opportunity
Aging Cell 2019
Open access · CC-BY