Abstract:
:Serotonin (5-HT) plays a key role in early brain development, and manipulation of 5-HT levels during this period can have lasting neurobiological and behavioral consequences. It is unclear how perinatal exposure to drugs, such as selective serotonin reuptake inhibitors (SSRIs), impacts cortical neural network function and what mechanism(s) may elicit the disruption of normal neuronal connections/interactions. In this article, we report on cortical wiring organization after pre- and postnatal exposure to the SSRI citalopram. We show that manipulation of 5-HT during early development in both in vitro and in vivo models disturbs characteristic chemoarchitectural and electrophysiological brain features, including changes in raphe and callosal connections, sensory processing, and myelin sheath formation. Also, drug-exposed rat pups exhibit neophobia and disrupted juvenile play behavior. These findings indicate that 5-HT homeostasis is required for proper brain maturation and that fetal/infant exposure to SSRIs should be examined in humans, particularly those with developmental dysfunction, such as autism.
journal_name
Proc Natl Acad Sci U S Aauthors
Simpson KL,Weaver KJ,de Villers-Sidani E,Lu JY,Cai Z,Pang Y,Rodriguez-Porcel F,Paul IA,Merzenich M,Lin RCdoi
10.1073/pnas.1109353108subject
Has Abstractpub_date
2011-11-08 00:00:00pages
18465-70issue
45eissn
0027-8424issn
1091-6490pii
1109353108journal_volume
108pub_type
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