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Frailty Assessment in an Aging Mouse Model
Published on: September 23, 2025
Systems integrity in health and aging - an animal model approach
Marije Oostindjer1, Gro V Amdam
1Department of Chemistry, Biotechnology and Food Science, Norwegian University of Life Sciences, PO Box 5003, N-1432, Aas, Norway. Marije.Oostindjer@umb.no.
Insights
Childhood intelligence correlates with longer lifespan, suggesting a biological basis. Research in honey bees and potential models like pigs points to stress handling as a key factor in health and longevity.
Area of Science:
- Neuroscience
- Genetics
- Animal Behavior
Background:
- Human lifespan shows a positive correlation with childhood intelligence (IQ).
- The biological underpinnings of this cognition-longevity link are debated, with potential roles for social-environmental factors versus biological traits.
- Understanding these mechanisms could offer insights into health and longevity disparities.
Purpose of the Study:
- To investigate the biological basis of the correlation between brain function and longevity.
- To explore stress handling mechanisms as a potential trait linking cognition and lifespan.
- To identify suitable animal models for studying these biological mechanisms.
Main Methods:
- Examined the correlation between brain function and longevity in honey bees, a model lacking human social-environmental factors.
- Proposed stress handling (coping) mechanisms as a trait of systems integrity.
- Discussed pigs as a model for studying behavioral, physiological, and molecular stress responses.
Main Results:
- A positive correlation between brain function and longevity was observed in honey bees.
- This finding suggests a biological explanation for the cognition-longevity link, independent of complex social factors.
- Individual differences in stress handling may underlie this correlation.
Conclusions:
- Stress handling mechanisms represent a potential biological trait connecting brain function and longevity.
- Pigs offer a promising model for elucidating the biological pathways involved in stress, health, cognition, and lifespan.
- Identifying biological factors influencing stress susceptibility may help address health disparities.
Abstract:
Human lifespan is positively correlated with childhood intelligence, as measured by psychometric (IQ) tests. The strength of this correlation is similar to the negative effect that smoking has on the life course. This result suggests that people who perform well on psychometric tests in childhood may remain healthier and live longer. The correlation, however, is debated: is it caused exclusively by social-environmental factors or could it also have a biological component? Biological traits of systems integrity that might result in correlations between brain function and lifespan have been suggested but are not well-established, and it is questioned what useful knowledge can come from understanding such mechanisms. In a recent study, we found a positive correlation between brain function and longevity in honey bees. Honey bees are highly social, but relevant social-environmental factors that contribute to cognition-survival correlations in humans are largely absent from insect colonies. Our results, therefore, suggest a biological explanation for the correlation in the bee. Here, we argue that individual differences in stress handling (coping) mechanisms, which both affect the bees' performance in tests of brain function and their survival could be a trait of systems integrity. Individual differences in coping are much studied in vertebrates, and several species provide attractive models. Here, we discuss how pigs are an interesting model for studying behavioural, physiological and molecular mechanisms that are recruited during stress and that can drive correlations between health, cognition and longevity traits. By revealing biological factors that make individuals susceptible to stress, it might be possible to alleviate health and longevity disparities in people.
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