Developmental plasticity of endocrine disorders in obesity model primed by early weaning in dams

N S Lima1, E G Moura, J G Franco

  • 1Laboratory of Endocrine Physiology, Department of Physiological Sciences, Roberto Alcantara Gomes Biology Institute, State University of Rio de Janeiro, Rio de Janeiro, Brazil.

Hormone and Metabolic Research = Hormon- Und Stoffwechselforschung = Hormones Et Metabolisme
|September 6, 2012
PubMed

Insights

Early weaning in rats alters adipocyte development and thyroid function, leading to obesity-related metabolic changes in adulthood. This study highlights the long-term impact of early life stress on metabolic health.

Area of Science:

  • Endocrinology
  • Developmental Biology
  • Metabolic Health

Background:

  • Early weaning is a form of early-life stress impacting developmental plasticity.
  • Adipose tissue morphology, adipokine expression, and endocrine function are sensitive to early-life conditions.

Purpose of the Study:

  • To investigate the long-term effects of early weaning on adipocyte morphology, adipokine expression, and adrenal/thyroid function in rat offspring.
  • To determine if early weaning primes offspring for metabolic disturbances in adulthood.

Main Methods:

  • Rats were divided into early weaning (EW) and control groups.
  • Adipocyte size, body fat mass, adipokine levels (leptin, adiponectin), and adrenal/thyroid hormones (T3, TSH, catecholamines, corticosterone) were measured at weaning (PN 21) and adulthood (PN 180).

Main Results:

  • Neonatal EW pups showed reduced adipocyte size and body fat, with altered leptin expression and hypothyroidism (lower T3, TSH).
  • Adult EW offspring exhibited increased food intake, body fat mass, adipocyte size, leptin, ADRβ3, and altered adiponectin levels.
  • Adult EW rats had higher adrenal catecholamine content but normal corticosterone and thyroid status.

Conclusions:

  • Early weaning induces hypothyroidism at weaning and adipocyte hypertrophy in adulthood, suggesting a link to obesity development.
  • Changes in adrenal catecholamines and visceral adipocyte ADRβ3 in EW adults are indicative of metabolic dysfunction and increased cardiovascular risk.

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