
SummaryThe developing brain is remarkably malleable as neural circuits are formed and these circuits are strongly dependent on hormones for their development. For those reasons, the brain is very vulnerable to the effects of endocrine‐disrupting chemicals (EDCs) during critical periods of development. This review focuses on three ubiquitous endocrine disruptors that are known to disrupt the thyroid function and are associated with neurobehavioral deficits: polychlorinated biphenyls, polybrominated diphenyl ethers, and bisphenol A. The human and rodent data suggesting effects of those EDCs on memory, cognition, and social behavior are discussed. Their mechanisms of action go beyond relative hypothyroidism with effects on neurotransmitter release and calcium signaling.
Pédiatrie, Thyroid Gland, Endocrine Disruptors, Anatomy (cytology, histology, embryology...) & physiology, Pediatrics, Sciences de la santé humaine, Cognition, Endocrinology, metabolism & nutrition, Phenols, Memory, Halogenated Diphenyl Ethers, Animals, Humans, Bisphenol A Compounds, Human health sciences, Benzhydryl Compounds, Social Behavior, development, Anatomie (cytologie, histologie, embryologie...) & physiologie, hormones, Behavior, Animal, Environmental Exposure, Life sciences, Polychlorinated Biphenyls, endocrine disruptors, Sciences du vivant, Endocrinologie, métabolisme & nutrition
Pédiatrie, Thyroid Gland, Endocrine Disruptors, Anatomy (cytology, histology, embryology...) & physiology, Pediatrics, Sciences de la santé humaine, Cognition, Endocrinology, metabolism & nutrition, Phenols, Memory, Halogenated Diphenyl Ethers, Animals, Humans, Bisphenol A Compounds, Human health sciences, Benzhydryl Compounds, Social Behavior, development, Anatomie (cytologie, histologie, embryologie...) & physiologie, hormones, Behavior, Animal, Environmental Exposure, Life sciences, Polychlorinated Biphenyls, endocrine disruptors, Sciences du vivant, Endocrinologie, métabolisme & nutrition
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