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Updated: Jun 25, 2025

A Phenotyping Regimen for Genetically Modified Mice Used to Study Genes Implicated in Human Diseases of Aging
Published on: July 14, 2016
Unveiling ceramide dynamics: Shedding light on healthy aging in growth hormone-releasing hormone knockout mice
Alexander Tate Lasher1, Liping Wang2, Jooyoung Hyun1
1Department of Biology, University of Alabama at Birmingham, Birmingham, Alabama, USA.
Abstract:
Dysregulation of growth hormone (GH) signaling consistently leads to increased lifespan in laboratory rodents, yet the precise mechanisms driving this extension remain unclear. Understanding the molecular underpinnings of the beneficial effects associated with GH deficiency could unveil novel therapeutic targets for promoting healthy aging and longevity. In our pursuit of identifying metabolites implicated in aging, we conducted an unbiased lipidomic analysis of serum samples from growth hormone-releasing hormone knockout (GHRH-KO) female mice and their littermate controls. Employing a targeted lipidomic approach, we specifically investigated ceramide levels in GHRH-KO mice, a well-established model of enhanced longevity. While younger GHRH-KO mice did not exhibit notable differences in serum lipids, older counterparts demonstrated significant reductions in over one-third of the evaluated lipids. In employing the same analysis in liver tissue, GHRH-KO mice showed pronounced downregulation of numerous ceramides and hexosylceramides, which have been shown to elicit many of the tissue defects that accompany aging (e.g., insulin resistance, oxidative stress, and cell death). Additionally, gene expression analysis in the liver tissue of adult GHRH-KO mice identified substantial decreases in several ceramide synthesis genes, indicating that these alterations are, at least in part, attributed to GHRH-KO-induced transcriptional changes. These findings provide the first evidence of disrupted ceramide metabolism in a long-lived mammal. This study sheds light on the intricate connections between GH deficiency, ceramide levels, and the molecular mechanisms influencing lifespan extension.
Insights
Growth hormone deficiency in mice extends lifespan by altering ceramide metabolism. Older mice showed reduced ceramides in serum and liver, linked to decreased synthesis genes, suggesting a role in healthy aging.
Area of Science:
- Metabolomics
- Aging research
- Endocrinology
Background:
- Growth hormone (GH) signaling dysregulation extends lifespan in rodents, but mechanisms are unclear.
- Investigating GH deficiency's molecular basis may reveal aging and longevity targets.
Purpose of the Study:
- Identify aging-associated metabolites in growth hormone-releasing hormone knockout (GHRH-KO) mice.
- Investigate ceramide metabolism alterations in GHRH-KO mice as a model of enhanced longevity.
Main Methods:
- Unbiased and targeted lipidomic analysis of serum and liver tissue from GHRH-KO and control mice.
- Gene expression analysis of ceramide synthesis pathways in liver tissue.
Main Results:
- Older GHRH-KO mice exhibited significant reductions in over one-third of serum lipids.
- Liver tissue showed pronounced downregulation of ceramides and hexosylceramides in GHRH-KO mice.
- Decreased expression of ceramide synthesis genes was observed in GHRH-KO mouse livers.
Conclusions:
- This study provides the first evidence of disrupted ceramide metabolism in a long-lived mammal.
- Reduced ceramide levels and synthesis are linked to GH deficiency and lifespan extension.
- Findings highlight potential therapeutic targets for healthy aging and longevity by modulating GH signaling and ceramide metabolism.

