Influence of low level maternal Pb exposure and prenatal stress on offspring stress challenge responsivity

M B Virgolini1, A Rossi-George, D Weston

  • 1Environmental and Occupational Health Sciences Institute, a joint Institute of the Robert Wood Johnson Medical School, University of Medicine and Dentistry of New Jersey and Rutgers, The State University of New Jersey, Piscataway, NJ 08854, USA.

Neurotoxicology
|October 28, 2008
PubMed

Insights

Maternal lead (Pb) exposure combined with prenatal stress alters offspring stress responses. These combined exposures impact behavior and corticosterone levels differently in male and female rats, highlighting the need for broader Pb screening.

Area of Science:

  • Neuroscience
  • Toxicology
  • Developmental Biology

Background:

  • Maternal lead (Pb) exposure and prenatal stress (PS) can synergistically affect offspring neurodevelopment and stress reactivity.
  • Previous studies showed potentiated effects of high blood Pb (PbB) and PS on female offspring stress responses.
  • The impact of lower PbB levels and potential gender-specific effects remain less understood.

Purpose of the Study:

  • To investigate if interactions between Pb exposure and PS occur at lower PbB levels.
  • To determine if these interactions exhibit gender specificity.
  • To assess the contribution of corticosterone and neurochemical changes to behavioral outcomes.

Main Methods:

  • Rat dams received 0, 50, or 150 ppm Pb acetate in drinking water prior to and during gestation and lactation.
  • A subset of dams in each Pb group experienced prenatal restraint stress (PS) during late gestation.
  • Offspring were exposed to variable intermittent stress challenges (restraint, cold, novelty) as adults, and their behavior (Fixed Interval schedule) and corticosterone levels were assessed.

Main Results:

  • PS alone altered Fixed Interval (FI) behavior (suppression in females, enhancement in males), with Pb exposure blunting these effects.
  • Pb exposure modulated corticosterone responses differently by gender: blunting in females and enhancing in males, with non-linear dose-dependence in males.
  • Behavioral performance was linked to corticosterone changes in females and to frontal cortical dopamine/serotonin in males; corticosterone responses varied between behaviorally tested and non-tested groups.

Conclusions:

  • Maternal Pb exposure interacts with prenatal stress to modify adult offspring behavioral and corticosterone responses to stress challenges.
  • These findings suggest that Pb's adverse effects are underestimated when studied in isolation from other risk factors.
  • There is a critical need to expand Pb exposure screening programs to pregnant women.

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