The immunometabolic roots of aging
Pierpaolo Ginefra1, Helen C Hope1, Girieca Lorusso2
1Department of Oncology, Ludwig Institute for Cancer Research, University of Lausanne, Epalinges, Switzerland.
Current Opinion in Immunology
|October 26, 2024
Summary
Aging accelerates chronic disease risk by impairing immune cell function due to metabolic changes. Understanding these metabolic shifts is key to developing interventions that promote healthy aging and extend health span.
Area of Science:
- Gerontology
- Immunology
- Metabolism
Background:
- Aging is a primary risk factor for chronic diseases, marked by declining cellular and organ function.
- Metabolic changes are increasingly recognized as key drivers of age-related dysfunction, particularly impacting immune cells.
- A compromised immune system accelerates the aging process, highlighting the critical link between immunity and aging.
Purpose of the Study:
- To elucidate the metabolic perturbations associated with aging at cellular and systemic levels.
- To emphasize the intricate relationship between metabolic alterations and immunosenescence.
- To explore novel interventions for preserving immune function and enhancing health span.
Main Methods:
- Review of recent studies on aging, metabolism, and immune function.
- Analysis of cellular and systemic metabolic changes during the aging process.
- Investigation of the interplay between metabolism and immunosenescence.
Main Results:
- Metabolic dysregulation is a significant factor in age-related immune decline.
- Both intrinsic and extrinsic factors contribute to metabolic alterations during aging.
- The aging immune system exhibits impaired performance and function due to metabolic shifts.
Conclusions:
- Understanding metabolic changes in aging is crucial for mitigating age-related immune decline.
- Targeting metabolic pathways offers potential strategies to protect immune function.
- Interventions focused on metabolism may promote a longer health span and reduce chronic disease risk.
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