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Extending lifespan by modulating the growth hormone/insulin-like growth factor-1 axis: coming of age
Silvana Duran-Ortiz1,2,3, Edward O List1, Reetobrata Basu1
1Edison Biotechnology Institute, Ohio University, Athens, USA.
Abstract:
Progress made in the years of aging research have allowed the opportunity to explore potential interventions to slow aging and extend healthy lifespan. Studies performed in yeast, worms, flies and mice subjected to genetic and pharmacological interventions have given insight into the cellular and molecular mechanisms associated with longevity. Furthermore, it is now possible to effectively modulate pathways that slow aging at different stages of life (early life or at an adult age). Interestingly, interventions that extend longevity in adult mice have had sex-specific success, suggesting a potential link between particular pathways that modulate aging and sex. For example, reduction of the growth hormone (GH)/insulin-like growth factor-1 (IGF-1) axis at an adult age extends lifespan preferentially in females. Moreover, several postnatal dietary interventions tested by the 'Intervention Testing Program (ITP)' from the National Institute of Aging (NIA) have shown that while pharmacological interventions like rapamycin affect the IGF-1/insulin pathway and preferentially extend lifespan in females; dietary compounds that target other cellular pathways are effective only in male mice-indicating mutually exclusive sex-specific pathways. Therefore, a combination of interventions that target non-overlapping aging-related pathways appears to be an effective approach to further extend healthy lifespan in both sexes. Here, we review the germline and postnatal mouse lines that target the GH/IGF-1 axis as a mechanism to extend longevity as well as the dietary compounds that tested positive in the NIA program to increase lifespan. We believe that the interventions reviewed in this paper could constitute feasible combinations for an extended healthy lifespan in both male and female mice.
Insights
Aging research reveals interventions to extend lifespan. Combining growth hormone/IGF-1 axis modulation with dietary compounds shows promise for increasing healthy longevity in both male and female mice.
Area of Science:
- Gerontology and Longevity Research
- Molecular and Cellular Biology
- Genetics and Aging
Background:
- Aging research has identified genetic and pharmacological interventions in model organisms that slow aging and extend lifespan.
- Modulating aging pathways is possible at different life stages, with notable sex-specific effects observed in interventions.
- The growth hormone (GH)/insulin-like growth factor-1 (IGF-1) axis and other cellular pathways show differential impacts on longevity between sexes.
Purpose of the Study:
- To review mouse models targeting the GH/IGF-1 axis for longevity.
- To examine dietary compounds from the National Institute of Aging's Intervention Testing Program (ITP) that increase lifespan.
- To explore the potential of combining interventions targeting non-overlapping aging pathways for extended healthy lifespan in both sexes.
Main Methods:
- Review of germline and postnatal mouse models affecting the GH/IGF-1 axis.
- Analysis of dietary interventions tested by the NIA's ITP.
- Examination of sex-specific outcomes in aging intervention studies.
Main Results:
- Reduction of the GH/IGF-1 axis extends lifespan preferentially in female mice.
- Pharmacological interventions like rapamycin impact the IGF-1/insulin pathway, benefiting females.
- Dietary compounds targeting different pathways show efficacy only in male mice, indicating sex-specific mechanisms.
Conclusions:
- Aging interventions can have sex-specific effects, highlighting distinct longevity pathways.
- Combining interventions targeting non-overlapping aging-related pathways is a promising strategy.
- Feasible combinations of GH/IGF-1 axis modulation and NIA ITP dietary compounds could extend healthy lifespan in both male and female mice.
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