Most neuropsychiatric disorders have developmental origins. Such developmental vulnerability is often restricted to sensitive periods, but affected behaviors, modulating factors, and underlying mechanisms are scarcely understood. This grant aims at furthering our knowledge of sensitive periods that determine the developmental trajectory of complex behaviors, which is a necessary step towards improving prevention and treatment approaches for neuropsychiatric disorders. We have recently identified 2 sensitive developmental periods whereupon early-life perturbation of monoamine signaling alters adult behavior: an early postnatal (P2-P11) 5-HT-sensitive period that affects anxiety and depression-related behaviors and a later peri-adolescent (P22-P41) DA- and 5-HT-sensitive period altering aggression and behavioral response amphetamine (AMPH). Here we will focus on the study of the latter, peri-adolescent (PA) period. To that end, we designed a research plan to investigate the overarching hypothesis that peri- adolescent DAT and 5-HTT blockade have opposing effects on the maturation of the DA-system, predisposing or protecting against high aggression and dopamine dysfunction. Our application consists of three aims.
In Aim1 we will more precisely define the temporal aspects of the PA sensitive period and broaden the analysis of behaviors impacted by PA 5-HTT- and DAT-inhibition. Results will guide experiments in Aim2 and Aim3 and will narrow down the potential developmental processes and circuits affected. Results will also help to translate findings across species, including humans.
In Aim2 we will directly assess the impact of PA DAT- and 5-HTT-blockade on the function of the DA-system by investigating DAergic neuron activity in vitro and in vivo. Results will give us mechanistic insigh into which elements of the DA-system are altered, allowing us to devise rescue and causality-testing experiments.
In Aim 3 we will investigate 5-HT/DA-interaction during and after PA DAT- and 5-HTT-inhibition. Results will shed light on how DAergic and 5-HTergic manipulations during PA development exert their opposing effects on circuit maturation and whether they permanently alter 5-HT/DA-interaction. Our research will impact the understanding of human risk factors for aggression and neuropsychiatric disorders with DA dysfunction. Our preliminary data suggest that genetic or environmental factors, which either increase DA signaling (such as stimulant use) or decrease 5-HT signaling during PA development act as risk factors for aggression and DA dysfunction. Conversely, genetic or environmental factors, which either decrease DA signaling or increase 5-HT signaling (such as SSRIs) during PA development, would act to ameliorate risk for aggression and DA dysfunction. Together with the mechanistic insight we will provide, our data could lead to improved diagnosis, prevention and treatment strategies in psychiatry.

Public Health Relevance

Most neuropsychiatric disorders have developmental origins, but knowledge about early risk factors remains scarce. We have identified a critical developmental period around adolescence, during which brain development is vulnerable to abnormal monoamine signaling, permanently altering aggressive behavior and dopamine function. Here we propose to narrow down the critical period, expand the analysis of behaviors affected and study the underlying mechanism, to improve diagnosis, prevention, and treatment strategies in psychiatry.

Agency
National Institute of Health (NIH)
Institute
National Institute of Mental Health (NIMH)
Type
Research Project (R01)
Project #
4R01MH099118-04
Application #
9043192
Study Section
Biobehavioral Regulation, Learning and Ethology Study Section (BRLE)
Program Officer
Simmons, Janine M
Project Start
2013-04-01
Project End
2018-03-31
Budget Start
2016-04-01
Budget End
2017-03-31
Support Year
4
Fiscal Year
2016
Total Cost
Indirect Cost
Name
New York State Psychiatric Institute
Department
Type
DUNS #
167204994
City
New York
State
NY
Country
United States
Zip Code
10032
Demireva, Elena Y; Suri, Deepika; Morelli, Emanuela et al. (2018) 5-HT2C receptor blockade reverses SSRI-associated basal ganglia dysfunction and potentiates therapeutic efficacy. Mol Psychiatry :
Teissier, Anne; Chemiakine, Alexei; Inbar, Benjamin et al. (2015) Activity of Raphé Serotonergic Neurons Controls Emotional Behaviors. Cell Rep 13:1965-76
Suri, Deepika; Teixeira, Cátia M; Cagliostro, Martha K Caffrey et al. (2015) Monoamine-sensitive developmental periods impacting adult emotional and cognitive behaviors. Neuropsychopharmacology 40:88-112
Rebello, Tahilia J; Yu, Qinghui; Goodfellow, Nathalie M et al. (2014) Postnatal day 2 to 11 constitutes a 5-HT-sensitive period impacting adult mPFC function. J Neurosci 34:12379-93
Yu, Q; Teixeira, C M; Mahadevia, D et al. (2014) Dopamine and serotonin signaling during two sensitive developmental periods differentially impact adult aggressive and affective behaviors in mice. Mol Psychiatry 19:688-98
Yu, Q; Teixeira, C M; Mahadevia, D et al. (2014) Optogenetic stimulation of DAergic VTA neurons increases aggression. Mol Psychiatry 19:635
Goodfellow, Nathalie M; Sargin, Derya; Ansorge, Mark S et al. (2014) Mice with compromised 5-HTT function lack phosphotyrosine-mediated inhibitory control over prefrontal 5-HT responses. J Neurosci 34:6107-11