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May 8, 2026Endocrinology2 citations

Perinatal Organophosphate Flame Retardant Exposure Alters Adult Stress Axis and Avoidance Behavior in Mice

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CRCatherine RojasJDJulia DeLuccaCBCaylee A Brown

Key Points

  • This study investigates the long-term effects of perinatal organophosphate flame retardant exposure on stress regulation in adult mice.
  • Pregnant C57Bl/6J dams were exposed to a mixture of OPFRs from gestational day 7 to postnatal day 14
  • Adult offspring were subjected to acute stress tests including restraint and acute variable stress
  • Gene expression analysis was performed on stress-regulatory pathways in the hypothalamus and pituitary.
  • OPFR exposure resulted in heightened serum corticosterone in treated females after restraint (specific values not provided)
  • Females showed altered gene expression in stress-regulatory pathways, while males exhibited hyperactivity and avoidance behaviors linked to increased BNST expression
  • Behavioral tests revealed increased avoidance and immobility in OPFR-treated females following acute variable stress.

Abstract

Organophosphate flame retardants (OPFRs) are ubiquitous flame-retardant additives with endocrine-disrupting properties. Despite increasing evidence that OPFRs impact neurodevelopment, their effects on the neuroendocrine stress response remain poorly understood. To examine their long-term impact on stress regulation, we treated pregnant C57Bl/6J dams to a mixture of tris(1,3-dichloro-2-propyl) phosphate (TDCPP), triphenyl phosphate (TPP), and tricresyl phosphate (TCP; 1 mg/kg each) from gestational day (GD) 7 through postnatal day (PND) 14. Adult offspring (8-9 weeks of age) were then challenged with acute stressors, including 1 h restraint or a 6-day acute variable stress (AVS) paradigm. Perinatal OPFR exposure produced persistent, sex-specific alterations in the hypothalamic-pituitary-adrenal (HPA) axis and stress-related neurocircuitry. Following 1 h restraint, OPFR-treated females showed heightened serum corticosterone. In addition, gene expression analysis revealed sex-dependent disruptions in key stress-regulatory pathways after OPFR treatment and 1 h restraint in the hypothalamus (Crhr1, Crhr2, Ptpn5) and pituitary (Crhr1, Pomc, Nr3c1). Females demonstrated more differences in adrenal gene expression related to steroidogenesis (Mc2r, Cyp11b2) and catecholamine biosynthesis (Dbh, Pnmt), with OPFR-treated groups having blunted responses. OPFR AVS females displayed reduced corticosterone and Crh mRNA in the hypothalamus, and downregulated Pacap/Pac1r expression in the bed nucleus of the stria terminalis (BNST), accompanied by increased behavioral avoidance and immobility. In males, OPFR exposure led to increased BNST Pacap and Pac1r, expression, along with hyperactivity and avoidance behaviors. Together, these findings demonstrate that early-life OPFR exposure induces lasting, sex-specific dysregulation of the HPA axis and associated stress circuits, highlighting OPFRs as developmental neuroendocrine disruptors with implications for mood and stress-related disorders.

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Cite This Study

Rojas et al. (2026) studied this question.

synapsesocial.com/papers/69fd7f4fbfa21ec5bbf07c14https://doi.org/10.1210/endocr/bqag051
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