Molecular mechanisms involved in the hormonal prevention of aging in the rat

Jesús A F Tresguerres1, Roman Kireev, Ana F Tresguerres

  • 1Department of Physiology, Faculty of Medicine, Complutense University, Avenida Complutense s/n, Madrid, Spain. querres@med.ucm.es

Insights

Growth hormone (GH) and melatonin treatments show promise in combating aging effects on the central nervous system (CNS), liver, and skin. These interventions reduce oxidative stress and apoptosis, suggesting a potential for slowing age-related physiological decline.

Area of Science:

  • Gerontology
  • Molecular Biology
  • Neuroscience

Background:

  • Previous studies indicated growth hormone (GH), melatonin, and estrogens may prevent aging across various physiological systems.
  • Aging is associated with neuronal loss and reduced neurogenesis in the hippocampus, oxidative stress in the liver, and cellular damage in the skin.

Purpose of the Study:

  • To investigate the molecular mechanisms underlying the anti-aging effects of GH, melatonin, estrogens, and Phytosoya.
  • To evaluate the impact of these treatments on age-related changes in the central nervous system (CNS), liver, and skin of rats.

Main Methods:

  • 140 male and female rats (22-24 months old) received various treatments (GH, melatonin, estradiol, Phytosoya) for 10 weeks.
  • Molecular markers of apoptosis, oxidative stress, and cellular damage were analyzed in brain, liver, and skin tissues.
  • Neurogenesis and neuronal counts were assessed in the hippocampus.

Main Results:

  • GH treatment increased hippocampal neuron numbers, reduced apoptosis markers (nucleosomes, caspases), and increased Bcl2 and sirtuin2.
  • Melatonin, estrogen, and Phytosoya increased neurogenesis but not total neuron count.
  • GH and melatonin treatments reduced oxidative stress and apoptosis markers in the liver and skin, improving age-related damage.

Conclusions:

  • GH and melatonin demonstrate beneficial effects against age-induced damage in the CNS, liver, and skin.
  • These benefits are mediated by molecular mechanisms that reduce oxidative stress and apoptosis.
  • Hormonal and phytoestrogen treatments offer potential therapeutic strategies for mitigating age-related physiological decline.

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