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Published on: March 25, 2016
Maternal Thyroid Supplementation Prevents Autistic-relevant Social Behavior and Hypothalamic Oxytocin Depletion
Elena V Kozlova1,2, Maximillian E Denys1,3, Anthony E Bishay1
1Department of Molecular Cell and Systems, University of California, Riverside, CA.
Insights
Flame retardants like PBDEs may increase autism risk by disrupting brain development. Thyroid hormone supplementation during pregnancy can prevent these effects and social behavior deficits in offspring.
Area of Science:
- Neuroscience
- Endocrinology
- Toxicology
Background:
- Environmental toxicants targeting the developing brain are implicated in autism spectrum disorder (ASD) risk.
- Polybrominated diphenyl ethers (PBDEs), indoor flame retardants, are known endocrine disruptors affecting the thyroid system.
- PBDEs' impact on thyroid hormone (TH) regulation and its link to oxytocin (OXT) signaling and ASD-like behaviors is not fully understood.
Purpose of the Study:
- To investigate the neuromolecular mechanisms by which developmental PBDE exposure disrupts central oxytocin (OXT) signaling and social behavior in mice.
- To evaluate the therapeutic potential of maternal thyroid hormone (TH) supplementation in preventing PBDE-induced neurodevelopmental deficits.
Main Methods:
- Developmental exposure of C57BL6/N mice dams to a commercial PBDE mixture (DE-71) during gestation and lactation, with or without L-thyroxine (mT4) supplementation.
- Assessment of ASD-relevant behavioral responses in offspring.
- Analysis of neuromolecular changes, including mRNA expression of TH transporters and receptors in hypothalamic OXT neurons.
Main Results:
- Developmental PBDE exposure led to dose-dependent ASD-relevant behavioral deficits and depletion of central OXT neurons in offspring.
- Concurrent maternal mT4 supplementation prevented these behavioral and neuroendocrine disruptions.
- Sex-specific alterations in TH-regulated gene expression (Mct8, Dio3, Esr2) were observed in OXT neurons, indicating differential mechanisms in males and females.
Conclusions:
- PBDEs disrupt neurodevelopment and social behavior through sex-specific reprogramming of thyroid hormone pathways in hypothalamic OXT neurons.
- Maternal thyroid hormone supplementation shows therapeutic potential against toxicant-induced neurodevelopmental disorders, including ASD-relevant phenotypes.
Abstract:
Environmental toxicants that target the developing brain are suspected of contributing to autism spectrum disorder risk but causative evidence is lacking. We and others have shown that the indoor flame retardants, polybrominated diphenyl ethers (PBDEs), reduce prosocial behavior, however, few studies have assessed the central targets and underlying mechanisms. PBDEs are well established endocrine disruptors of the expanded thyroid system, which also regulates the prosocial neuropeptides oxytocin (OXT) and vasopressin (AVP) and their hypothalamic signaling. The potential role of PBDE-induced thyroid hormone (TH) deregulation in mediating disruption of central OXT and ASD-like social behavior deficits remains unmapped. To address this gap, we conducted a study in C57BL6/N mice that examined behavioral and neuromolecular reprogramming after developmental exposure to the commercial PBDE mixture, DE-71, and evaluated the therapeutic potential of TH supplementation. Dams were exposed daily during gestation and lactation to corn oil vehicle, low dose (0.1 mg/kg) and high dose (0.4 mg/kg) of DE-71 with or without concurrent L-thyroxine (+mT4). In offspring, dose-dependent ASD-relevant behavioral responses and central neuroendocrine OXT neuron depletion after developmental PBDE exposure was prevented with mT4. mRNA transcripts for the TH transporter Mct8, deiodinase (Dio3) and estrogen receptor beta (Esr2) expressed on OXT neurons in PVH were upregulated in low dose females. In contrast, Mct8 and Dio3 were downregulated in low dose males. These findings uncover sex-specific mechanisms of PBDE-induced reprogramming of TH-regulated pathways in hypothalamic neuroendocrine cells leading to depleted central OXT signaling and ultimately ASD-relevant phenotypes. Importantly, we provide novel evidence of the therapeutic potential of maternal thyroid supplementation against toxicant-induced neurodevelopmental disorders.
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