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.

Longevity & Healthspan
|January 30, 2014
PubMed

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.